SlideShare a Scribd company logo
1 of 7
Download to read offline
IOSR Journal of Applied Physics (IOSR-JAP)
e-ISSN: 2278-4861.Volume 7, Issue 6 Ver. II (Nov. - Dec. 2015), PP 64-70
www.iosrjournals
DOI: 10.9790/4861-07626470 www.iosrjournals.org 64 | Page
Investigation of the Effects of Fullerene addition and Plasma
Exposure on Optical Properties of Polystyrene Films
N. M. Elsayed*, O. F. Farag, M. H. Elghazaly and D. A. Nasrallah
Physics Department, Faculty of Science, Zagazig University, Egypt
Abstract: In the present study, two different methods of modification (Fullerene addition and plasma exposure)
were applied to tune the basic optical properties and optical constants of the polystyrene films with thickness in
the range (0.22-0.25 mm). The samples have been investigated via absorbance, transmittance and reflectance
spectra, and characterized in the wavelength range 200–900 nm. The optical band gap Eg is found to be
decreased after Fullerene addition while it is not changed with plasma exposure. The optical constants
(refractive index, extinction coefficient, and real and imaginary parts of the dielectric constant) showed clear
changes with Fullerene addition and plasma exposure.
Keywords: polystyrene/ fullerene/ plasma exposure/ optical constants/ optical band gap/ doping
I. Introduction
In recent years, polymers with different optical properties have been attracted much attentions due to
their applications in the sensors, light-emitting diodes and others [1]. The optical study is very interesting
because it provides an important information about the absorbance, transmittance and reflectance of the
observed polymeric films [2]. The optical absorption and especially the absorption edge present a useful method
for the investigation of optically induced transition and for getting information about the band structure, the
band tail and the energy gap of the polymeric materials under consideration [3].
The optical properties of polymeric materials can be easily tuned by controlling contents of the
different concentrations [1] and by physical surface modification. Physical surface modification by flame,
corona treatment, UV, gamma-ray, electron beam irradiations, ion beam, plasma, and laser treatments [4, 5, 6, 7]
lead the breakage of covalent bonds, promotion of cross linkages, formation of carbon clusters, liberation of
volatile species and in certain cases creation of new chemical bonds [8]. All these processes introduce so-called
defects inside the material that are responsible for change in the optical, electrical, mechanical and chemical
properties of the material [9].
Polystyrene (PS) is amorphous polymer with bulky side groups. General purposes PS are hard, rigid,
and transparent at room temperature and glass like thermoplastic material which can be soften and distort under
heat. It is soluble in aromatic hydrocarbon solvents, cyclohexane and chlorinated hydrocarbons [10].
Fullerene (C60) is a widely studied material due to its unique optical, electrical, and chemical properties
[11]. It has potential applications in hetero-junction solar cell as well as medical sciences [12]. Incorporation of
fullerene and nanotubes into chemical composition of polymers gives one more opportunities for their study and
application as composite materials, films, and fibers serving different purposes [13].
Plasma treatment have distinct advantages over other methods, modifications are limited to the surface
layer to a depth of typically 0.005 to 0.05 μm without affecting the bulk properties of the polymer [14].
Moreover, it is a rabid and environmentally friendly process [15]. The effect of plasma treatment depends on a
verity of parameters such as kind of plasma (DC, radio frequency (RF) or microwave (MW)), the discharge
power, the pressure of the gas, as well as exposure time [16].
In the present paper, we study the effects of fullerene addition and DC N2 plasma on the basic optical
properties and optical constants of the polystyrene films.
II. Materials And Methods
1. Samples preparation
The studied samples were prepared by the casting technique. PS of molecular weight 192,000 in the
form of grains and Fullerene (C60) of molecular weight 720.64 were supplied by Sigma- Aldrich Company. PS
and Fullerene (C60) were dissolved in toluene with purity 99.99 %, the complete dissolution was obtained using
a magnetic stirrer at room temperature for half-hour. A mixture of the solution was cast onto a clean glass Petri
dish. The whole assembly was placed in a dust free chamber and allowed to evaporate the solvent slowly in air
at room temperature for one week. The thickness of the films was in the range of (0.22-0.25 mm), it was
determined using micrometer at different places in each film and an average was taken.
The Fullerene content in films prepared in this study are 0, 1× 10-5
, 5 × 10-5
, 1× 10-4
, 5 × 10-4
and 1× 10-3
mol.
%.
Investigation of the Effects of Fullerene addition and Plasma Exposure on Optical Properties…
DOI: 10.9790/4861-07626470 www.iosrjournals.org 65 | Page
2. Plasma treatment
Figure (1) represents a schematic diagram of the DC glow discharge setup used for surface treatment of
the PS films. The setup consists of a Pyrex tube of (18 cm) long and (13 cm) diameter closed at each end with
aluminum plate. Two planes circular stainless steel plates of (5 cm radius) represent the two electrodes are
connected to each other with four isolated rods keeping the spacing constant at (7 cm). The two electrodes move
axially forward and backward as a unit controlled by a handle outside the tube. The base pressure is attained into
the tube at (10-3
Torr) by using a rotary pump (Edwards H. vacuum pump, model ED 200) then the N2 gas is
allowed to inter the tube throw a controllable needle valve. Plasma properties were kept constant during the
experiment, as the gas pressure was 0.4 Torr, and the discharge power was about 3.5 W. The exposure time was
varied from 15 to 120 minutes.
The films were cut to give sample size (1.5 x 2 cm). The samples were supported on a glass rode and put in front
of the cathode at the edge of the negative glow.
3. UV-Visible Spectroscopy
Ultra violet and visible (UV/VIS) absorbance, transmittance and reflectance spectra of pristine and
plasma treated PS and pristine (PS-C60) films were recorded over a wavelength range 200–900 nm using a
Perkin–Elmer Lambda 950 spectrophotometer. The optical absorption and reflectance spectra were analyzed to
determine optical constants such as refractive index n, extinction coefficient k, and absorption coefficient α.
Analysis of the absorption coefficient was also carried out to determine the optical band gap.
III. Results And Discussion
1. Optical absorption spectra
Figure (2.a) shows UV-Visible spectra of the PS films filled with different concentrations of Fullerene
(C60). Pure PS exhibit strong absorption over the 200-280 nm range (max 240 nm). The peak at 240 nm can be
attributed to the phenyl ring in each repeat unit [17]. On the other hand, Fullerene (C60) exhibit strong
absorption peak at 335 nm and two weak-broad bands between 450 and 640 nm which are attributed to the π-π
transition and the transition from HOMO to LUMO, respectively [18].
UV-Visible spectra recorded for the plasma treated PS films are displayed in Figure (2.b) for different
durations. An increase of absorbance is observed in spectra of samples exposed to plasma, which indicates that
absorbing photoproducts (e.g. conjugated double bonds) are present in PS [17].
2. Optical energy gap
The variation of the optical bulk absorption coefficient, α, with wavelength is a unique parameter of the
medium. The importance of the absorption coefficient is related to the valuable information that can be
obtained, such as the electronic band structure and the optical energy band gap. The absorption coefficient can
be estimated from the optical absorption spectrum owing to the following equation [3]:
dA /303.2)(  (1)
where A is the absorbance and d is the film thickness.
Figure (2): The UV-Visible absorption spectra, (a) for PS films filled with different
concentrations of C60 and (b) for pristine and plasma treated PS films for different durations.
Investigation of the Effects of Fullerene addition and Plasma Exposure on Optical Properties…
DOI: 10.9790/4861-07626470 www.iosrjournals.org 66 | Page
Figure (2): The UV-Visible absorption spectra, (a) for PS films filled with different concentrations of C60
and (b) for pristine and plasma treated PS films for different durations.
The relation between the optical energy band gap, absorption coefficient and energy (hv) of the
incident photon is given by [19,20]:
r
g
EhBh )(   (2)
where α is the absorption coefficient, ν is the frequency, h is the Planck’s constant, B is a constant, Eg
is the optical energy band gap between the valence and the conduction bands and r is the power that
characterizes the transition process. Specifically, r can take the values 1/2, 3/2, 2, and 3 for transitions
designated as direct allowed, direct forbidden, indirect allowed and indirect forbidden, respectively.
The usual method to determine the optical energy band gap is to plot a graph between (hνα)1/r
and hv.
The best fit of indirect transitions is obtained for r = 2, meanwhile for a direct transition the best fit is obtained
for r = 1/2 . The indirect optical energy band gap is determined by plotting (α hν)1/2
against the photon energy
(hv). The extrapolation of the straight parts of the curves to the energy axis (hv) yields the indirect optical
energy band gap.
The variation of the absorption coefficient (α) versus photon energy (hν) for pure and doped PS with
C60 of different concentrations is shown in Figure (3.a). The absorption coefficient of samples increased with
increasing C60 concentrations in the film. Also, it can be seen that the behavior of (α) is similar to the absorption
spectra.
Figure (3.b) shows the absorption coefficient (α) as function of photon energy (hν) for pristine and
nitrogen plasma treated PS films at different durations. It is clear from this figure that the values of (α) showed
increase with increase in the exposure time. The increase in (α) with increasing the exposure time is attributed to
same reasons that were discussed for the increase in the absorbance of UV-Visible spectra.
Figure (4) displays the C60 content dependence of Eg and the results are listed in table 1. It is clear that
the values of indirect optical energy band gap are decreased with increasing C60 content in PS films. Such
behavior is in accordance with those reported previously [21, 22]. The decrease in the optical energy band gap
with filling may be explained by increasing the incorporation of C60 contents in the polymeric host matrix. This
Investigation of the Effects of Fullerene addition and Plasma Exposure on Optical Properties…
DOI: 10.9790/4861-07626470 www.iosrjournals.org 67 | Page
introduces additional absorption bands in the UV and visible regions of the optical spectra as shown in UV-
Visible spectra (fig. 2a).
The values of optical energy band gap for pristine and plasma treated samples are tabulated in Table II.
As can be seen the values of indirect optical energy band gap are not changed with the increase in the exposure
time. This may be due to low power of the applied plasma [23].
Table I: Displays the C60 content dependence of Eg values of indirect transition.
C60 Concentration ( mol. %) Eg (indirect) (eV)
0 4.22
1×10-5
4.14
5×10-5
3.56
1×10-4
3.26
5×10-4
2.42
1×10-3
2.38
Table II: Displays the values of optical energy band gaps for pristine and plasma treated samples.
3. The Refractive index (n)
The index of refraction of a material is the ratio of the velocity of the light in vacuum to that of the
specimen. The refractive index of the films was calculated by the following equation [24]:
2
2
)1(
4
1
1
k
R
R
R
R
n 









 (3)
where R is the reflectance and k is the extinction coefficient.
The extinction coefficient (k) describes the properties of the material with respect to light of a given wavelength
and indicates the absorption changes when the electromagnetic wave propagates through the material. The
extinction coefficient (k) was calculated using the following equation [23]:
 4/k (4)
where λ is the wavelength and α is the absorption coefficient.
Figure (5.a) shows the refractive index as function of wavelength for pure and doped PS with C60 of
different concentrations. In this figure, (n) exhibits to decrease with λ for pure and doped films. Also the values
of (n) showed increase with increasing C60 concentrations. Moreover, (n) increases from 1.45 to 2.45 at λ = 625
Exposure Time (min.) Eg (indirect) (eV)
0 4.22
15 4.22
30 4.22
60 4.22
120 4.22
Figure (4): The dependence of (α hν)1/2
on the photon energy for PS films filled with
different concentrations of C60.
Investigation of the Effects of Fullerene addition and Plasma Exposure on Optical Properties…
DOI: 10.9790/4861-07626470 www.iosrjournals.org 68 | Page
nm (when C60 concentration increases from (0 to 1 × 10-3
) mol. %. This is a result of increasing the number of
atomic refractions due to the increase of the C60 concentrations in the films.
Figure (5.b) shows the refractive index as function of wavelength for pristine and nitrogen plasma
treated PS films at different durations. It is clear from this figure, that the refractive index for pristine and
nitrogen plasma treated PS films decrease with increasing λ. Also the values of (n) showed increase with the
increase in the exposure time. This increase in refractive index with increasing the exposure time may be
attributed the etching action of the plasma which increase roughness of film surface.
Figure (6.a) shows the variations of (k) with λ of pure and doped PS with C60. (k) shows an increasing
with increasing C60 concentration. This increase in the values of (k) can be ascribed to high absorption
coefficient [25]. This result indicates that the dopant atoms of C60 will modify the structure of PS. C60 dopant
has increased the absorbance in the visible region.
Figure (6.b) shows (k) as function of wavelength for pristine and nitrogen plasma treated PS films at
different durations. It is clear from this figure, that the values of the extinction coefficient showed increase with
the increase in the exposure time. The increase in extinction coefficient with increasing the exposure time is
attributed to same reason that was discussed for the increase in the absorbance of UV-Visible spectra.
IV. Complex dielectric function
The complex dielectric constant is defined as the response of the material toward the incident
electromagnetic field. The complex dielectric constant of compound ε is divided into two parts real εr, and
imaginary εi. The real and imaginary parts of dielectric constant (εr and εi) were calculated by the following
equations [26, 27]:
Investigation of the Effects of Fullerene addition and Plasma Exposure on Optical Properties…
DOI: 10.9790/4861-07626470 www.iosrjournals.org 69 | Page
nk
kn
i
r
2
,
22




(5)
Figures (7.a and b) show the real and imaginary parts of dielectric constant (εr and εi) as function of
wavelength for pure and doped PS with C60 of different concentrations. From Figures 7a and b it is seen that the
real and imaginary parts of the dielectric constant decrease with increasing the wavelength. The real part of the
dielectric constant is higher than the imaginary part.
Figures (8.a and b) show the real and imaginary parts of dielectric constant (εr and εi) as function of
wavelength for pristine and nitrogen plasma treated PS films at different durations. It is clear from these figures,
that (εr and εi) for pristine and nitrogen plasma treated PS films decrease with increasing λ. Also the values of (εr
and εi) showed increase with the increase in the exposure time.
It is concluded that the variation of εr mainly depends on n2
because of small values of k2
, while εi
mainly depends on the k values which are related to the variation of absorption coefficients.
V. Conclusion
The present study revealed the significant effects of varying Fullerene content and plasma exposure on
optical properties of the polystyrene films. From the experimental results we can conclude that:
(1) The values of indirect optical energy band gap are decreased with the increase in the Fullerene content.
Meanwhile their values are not changed with the increase in the plasma exposure time.
(2) The Refractive index (n) increases by increasing both Fullerene content and plasma exposure time.
Investigation of the Effects of Fullerene addition and Plasma Exposure on Optical Properties…
DOI: 10.9790/4861-07626470 www.iosrjournals.org 70 | Page
(3) The real and imaginary parts of the dielectric constant were showed clear changes with Fullerene addition
and plasma exposure.
References
[1] Alwan T J, Malaysian Polymer Journal, 2010, 5, 204.
[2] Deshmukh S H, Burghat D K, Shilaska S N and Deshmukh P T, Indian Journal of Pure & Applied Physics ,2008, 46, 344.
[3] El-Khodary A, Physica B: Condensed Matter, 2010, 405, 4301.
[4] Cheung R KY Fu, I T L, Mei Y F, Shek C H, Siu G G, Chu P K, Yang W M, Leng Y X, Huang Y X, Tian X B and Yang S Q,
Nuclear Instruments and Methods in Physics Research, 2005, 237, 417.
[5] Kaczmarek Hand Chaberska H, Applied Surface Science, 2006, 252, 8185.
[6] Ozdemir M, Yurteri C U and Sadikoglu H, Critical Reviews in Food Science and Nutrition, 1999, 39, 457.
[7] Zhang W, Chu P K, Zhang J and Jiang Z, Applied Surface Science, 2006, 252, 7884.
[8] Saravanan S, Anantharaman M R, Venkatachalam S, Avasthi D K, Vacuum, 2007, 82, 56.
[9] Sharma T, Aggarwal S, Kumar S, Mittal VK, Kalsi PC and Manchanda V K, Journal of Materials Science, 2007, 42, 1127.
[10] Saeed A A, Ph.D. Thesis, Physics Department, College of Science, Baghdad University, Baghdad, Iraq, (2000).
[11] Kim JW, Kim KJ, Park S, Jeong K U and Lee M H, Bulletin of the Korean Chemical Society , 2012, 33, 2966.
[12] Chakraborty C, Malik S, Guenet J M, Macromolecular Symposia, 2011, 303, 56.
[13] Zhogova K B, Davydov I A, Punin V T, Troitskii B B and Domvachiev G A European Polymer Journal, 2005, 41, 1260.
[14] Mortazavi S H, Ghoranneviss M and Faryadras S, Journal of Fusion Energy, 2011.
[15] De Geyter N, Morent R, Leys C, Gengember L and Payen E, Surface & Coatings Technology, 2007, 201,7066,7075.
[16] Kitova S, Minchev M, and Danev G, Journal of Optoelectronics and Advanced materials, 2005, 7, 249,252.
[17] Jaleha B, Shayegani Madad M, Farshchi Tabrizi M, Habibi S, Golbedaghi R and Keymanesh MR, Journal of the Iranian Chemical
Society ,2011, Soc 8,S161,S168.
[18] Kumar A, Podhorodecki A, Misiewicz J, Avasthi D K and Pivin J C, Journal of Applied Physics, 2009, 105,024314.
[19] Tauc J, Amorphous and Liquid Semiconductors, Plenum Press, New York, 1979, pp159
[20] Mott N and Davis E, Electronic Process in Non-Crystalline Materials, 2nd
Edition, University Press, Oxford, 1979.
[21] Adamopoulos G, Heiser T, Giovanella U, Ould-Saad S, vande Wetering KI, Brochon C, Zorba T, Paraskevopoulos KM and
Hadziioannou G, Thin Solid Films, 2006, 511 , 371.
[22] Ahmed R M and El-Bashir S M, International Journal of Photoenergy, 2011, 801409 ,1.
[23] Dorranian D, Abedini Z, Hojabri A, Ghoranneviss M, Journal of Non-Oxide Glasses, 2009, 1,217 , 229.
[24] Dragoman D and Dragoman M, Optical characterization of solids. 1st ed, Springer, Berlin, 2002.
[25] Hasan B A, Journal of Education College, 2005, 5 (3), 449.
[26] Seraphin B O, Optical Properties of Solid New Developments, Company, American Elsevier Publishing, New York, 1976.
[27] Ghanipour M and Dorranian D, Journal of Nanomaterials, 2013,1,10.

More Related Content

What's hot

Polyaniline with natural latex
Polyaniline with natural latexPolyaniline with natural latex
Polyaniline with natural latexAmmar Fitri
 
OPTICAL PROPERTIES OF MDMO-PPV AND MDMO-PPV/ [6,6]-PHENYL C61-BUTYRIC ACID 3-...
OPTICAL PROPERTIES OF MDMO-PPV AND MDMO-PPV/ [6,6]-PHENYL C61-BUTYRIC ACID 3-...OPTICAL PROPERTIES OF MDMO-PPV AND MDMO-PPV/ [6,6]-PHENYL C61-BUTYRIC ACID 3-...
OPTICAL PROPERTIES OF MDMO-PPV AND MDMO-PPV/ [6,6]-PHENYL C61-BUTYRIC ACID 3-...ijoejournal
 
The influence of ambient conditions on properties of MgxZn1-xO films by sputt...
The influence of ambient conditions on properties of MgxZn1-xO films by sputt...The influence of ambient conditions on properties of MgxZn1-xO films by sputt...
The influence of ambient conditions on properties of MgxZn1-xO films by sputt...M.I. Joaquin Torres Salas
 
Welcome to International Journal of Engineering Research and Development (IJERD)
Welcome to International Journal of Engineering Research and Development (IJERD)Welcome to International Journal of Engineering Research and Development (IJERD)
Welcome to International Journal of Engineering Research and Development (IJERD)IJERD Editor
 
Effect of calcination on the electrical properties and quantum confinement of...
Effect of calcination on the electrical properties and quantum confinement of...Effect of calcination on the electrical properties and quantum confinement of...
Effect of calcination on the electrical properties and quantum confinement of...eSAT Journals
 
Effect of calcination on the electrical properties and quantum confinement of...
Effect of calcination on the electrical properties and quantum confinement of...Effect of calcination on the electrical properties and quantum confinement of...
Effect of calcination on the electrical properties and quantum confinement of...eSAT Publishing House
 
Paper id 21201477
Paper id 21201477Paper id 21201477
Paper id 21201477IJRAT
 
Role of Environmental Factors on the Structure and Spectroscopic Response
Role of Environmental Factors on the Structure and Spectroscopic ResponseRole of Environmental Factors on the Structure and Spectroscopic Response
Role of Environmental Factors on the Structure and Spectroscopic ResponseAngela Mammana
 
International Journal of Engineering Research and Development
International Journal of Engineering Research and DevelopmentInternational Journal of Engineering Research and Development
International Journal of Engineering Research and DevelopmentIJERD Editor
 
Optical properties of (polystyrene wood buckthorn peel) composites
Optical properties of (polystyrene wood buckthorn peel) compositesOptical properties of (polystyrene wood buckthorn peel) composites
Optical properties of (polystyrene wood buckthorn peel) compositesAlexander Decker
 
Al Ga As Pccp Paulus
Al Ga As Pccp PaulusAl Ga As Pccp Paulus
Al Ga As Pccp Pauluspaulknijn
 
Finite Element Analysis of PNC - Copy
Finite Element Analysis of PNC - CopyFinite Element Analysis of PNC - Copy
Finite Element Analysis of PNC - CopyRaj Vaibhav
 
High-Gradient Magnetic Separation Method for Weakly Magnetic Particles: an In...
High-Gradient Magnetic Separation Method for Weakly Magnetic Particles: an In...High-Gradient Magnetic Separation Method for Weakly Magnetic Particles: an In...
High-Gradient Magnetic Separation Method for Weakly Magnetic Particles: an In...Barhm Mohamad
 

What's hot (20)

Polyaniline with natural latex
Polyaniline with natural latexPolyaniline with natural latex
Polyaniline with natural latex
 
OPTICAL PROPERTIES OF MDMO-PPV AND MDMO-PPV/ [6,6]-PHENYL C61-BUTYRIC ACID 3-...
OPTICAL PROPERTIES OF MDMO-PPV AND MDMO-PPV/ [6,6]-PHENYL C61-BUTYRIC ACID 3-...OPTICAL PROPERTIES OF MDMO-PPV AND MDMO-PPV/ [6,6]-PHENYL C61-BUTYRIC ACID 3-...
OPTICAL PROPERTIES OF MDMO-PPV AND MDMO-PPV/ [6,6]-PHENYL C61-BUTYRIC ACID 3-...
 
The influence of ambient conditions on properties of MgxZn1-xO films by sputt...
The influence of ambient conditions on properties of MgxZn1-xO films by sputt...The influence of ambient conditions on properties of MgxZn1-xO films by sputt...
The influence of ambient conditions on properties of MgxZn1-xO films by sputt...
 
Magnetic NanoComposites
Magnetic NanoCompositesMagnetic NanoComposites
Magnetic NanoComposites
 
Seminar ppt
Seminar pptSeminar ppt
Seminar ppt
 
Welcome to International Journal of Engineering Research and Development (IJERD)
Welcome to International Journal of Engineering Research and Development (IJERD)Welcome to International Journal of Engineering Research and Development (IJERD)
Welcome to International Journal of Engineering Research and Development (IJERD)
 
Artigo JAOS 2008
Artigo JAOS 2008Artigo JAOS 2008
Artigo JAOS 2008
 
Effect of calcination on the electrical properties and quantum confinement of...
Effect of calcination on the electrical properties and quantum confinement of...Effect of calcination on the electrical properties and quantum confinement of...
Effect of calcination on the electrical properties and quantum confinement of...
 
Effect of calcination on the electrical properties and quantum confinement of...
Effect of calcination on the electrical properties and quantum confinement of...Effect of calcination on the electrical properties and quantum confinement of...
Effect of calcination on the electrical properties and quantum confinement of...
 
10.1007_s10854-015-3170-5
10.1007_s10854-015-3170-510.1007_s10854-015-3170-5
10.1007_s10854-015-3170-5
 
Paper id 21201477
Paper id 21201477Paper id 21201477
Paper id 21201477
 
Role of Environmental Factors on the Structure and Spectroscopic Response
Role of Environmental Factors on the Structure and Spectroscopic ResponseRole of Environmental Factors on the Structure and Spectroscopic Response
Role of Environmental Factors on the Structure and Spectroscopic Response
 
International Journal of Engineering Research and Development
International Journal of Engineering Research and DevelopmentInternational Journal of Engineering Research and Development
International Journal of Engineering Research and Development
 
Optical properties of (polystyrene wood buckthorn peel) composites
Optical properties of (polystyrene wood buckthorn peel) compositesOptical properties of (polystyrene wood buckthorn peel) composites
Optical properties of (polystyrene wood buckthorn peel) composites
 
Al Ga As Pccp Paulus
Al Ga As Pccp PaulusAl Ga As Pccp Paulus
Al Ga As Pccp Paulus
 
CHEMISTRY OF NANOSCALE MATERIALS
CHEMISTRY OF NANOSCALE MATERIALSCHEMISTRY OF NANOSCALE MATERIALS
CHEMISTRY OF NANOSCALE MATERIALS
 
Finite Element Analysis of PNC - Copy
Finite Element Analysis of PNC - CopyFinite Element Analysis of PNC - Copy
Finite Element Analysis of PNC - Copy
 
High-Gradient Magnetic Separation Method for Weakly Magnetic Particles: an In...
High-Gradient Magnetic Separation Method for Weakly Magnetic Particles: an In...High-Gradient Magnetic Separation Method for Weakly Magnetic Particles: an In...
High-Gradient Magnetic Separation Method for Weakly Magnetic Particles: an In...
 
Sub1596
Sub1596Sub1596
Sub1596
 
Pushkar N Patil
Pushkar N PatilPushkar N Patil
Pushkar N Patil
 

Similar to Investigation of the Effects of Fullerene addition and Plasma Exposure on Optical Properties of Polystyrene Films

Study of highly broadening Photonic band gaps extension in one-dimensional Me...
Study of highly broadening Photonic band gaps extension in one-dimensional Me...Study of highly broadening Photonic band gaps extension in one-dimensional Me...
Study of highly broadening Photonic band gaps extension in one-dimensional Me...IOSR Journals
 
11.the optical constants of highly absorbing films using the spectral reflect...
11.the optical constants of highly absorbing films using the spectral reflect...11.the optical constants of highly absorbing films using the spectral reflect...
11.the optical constants of highly absorbing films using the spectral reflect...Alexander Decker
 
Preparation of (pomegranate peel polystyrene) composites and study their opt...
Preparation of (pomegranate peel  polystyrene) composites and study their opt...Preparation of (pomegranate peel  polystyrene) composites and study their opt...
Preparation of (pomegranate peel polystyrene) composites and study their opt...Alexander Decker
 
Characterization of Polyaniline for Optical and Electrical Properties
Characterization of Polyaniline for Optical and Electrical PropertiesCharacterization of Polyaniline for Optical and Electrical Properties
Characterization of Polyaniline for Optical and Electrical PropertiesIOSR Journals
 
The International Journal of Engineering and Science
The International Journal of Engineering and ScienceThe International Journal of Engineering and Science
The International Journal of Engineering and Sciencetheijes
 
Non-parabolicity and band gap renormalisation in Si doped ZnO
Non-parabolicity and band gap renormalisation in Si doped ZnONon-parabolicity and band gap renormalisation in Si doped ZnO
Non-parabolicity and band gap renormalisation in Si doped ZnOUniversity of Liverpool
 
Spectral studies of praseodymium doped heavy metal borate glass systems
Spectral studies of praseodymium doped heavy metal borate glass systemsSpectral studies of praseodymium doped heavy metal borate glass systems
Spectral studies of praseodymium doped heavy metal borate glass systemsinventy
 
Study the physical properties of some alloy materials and effect of gamma rad...
Study the physical properties of some alloy materials and effect of gamma rad...Study the physical properties of some alloy materials and effect of gamma rad...
Study the physical properties of some alloy materials and effect of gamma rad...Alexander Decker
 
Surface and volume energy loss , optical conductivity of rhodamine 6 g dye (...
Surface and volume energy loss , optical conductivity  of rhodamine 6 g dye (...Surface and volume energy loss , optical conductivity  of rhodamine 6 g dye (...
Surface and volume energy loss , optical conductivity of rhodamine 6 g dye (...Alexander Decker
 
TUNABLE BROADBAND ALL-DIELECTRIC PERFECT ABSORBER BASED ON PHASE CHANGE MATERIAL
TUNABLE BROADBAND ALL-DIELECTRIC PERFECT ABSORBER BASED ON PHASE CHANGE MATERIALTUNABLE BROADBAND ALL-DIELECTRIC PERFECT ABSORBER BASED ON PHASE CHANGE MATERIAL
TUNABLE BROADBAND ALL-DIELECTRIC PERFECT ABSORBER BASED ON PHASE CHANGE MATERIALoptljjournal
 
TUNABLE BROADBAND ALL-DIELECTRIC PERFECT ABSORBER BASED ON PHASE CHANGE MATERIAL
TUNABLE BROADBAND ALL-DIELECTRIC PERFECT ABSORBER BASED ON PHASE CHANGE MATERIALTUNABLE BROADBAND ALL-DIELECTRIC PERFECT ABSORBER BASED ON PHASE CHANGE MATERIAL
TUNABLE BROADBAND ALL-DIELECTRIC PERFECT ABSORBER BASED ON PHASE CHANGE MATERIALoptljjournal
 
A simple photochemical_method_to_synthes
A simple photochemical_method_to_synthesA simple photochemical_method_to_synthes
A simple photochemical_method_to_synthesfranciscocabrera94
 
A simple photochemical_method_to_synthes
A simple photochemical_method_to_synthesA simple photochemical_method_to_synthes
A simple photochemical_method_to_synthesfranciscocabrera94
 
A simple photochemical_method_to_synthes
A simple photochemical_method_to_synthesA simple photochemical_method_to_synthes
A simple photochemical_method_to_synthesfranciscocabrera94
 
ELECTRICAL AND STRUCTURAL PROPERTIES OF ZnSe THIN FILMS BY ELECTRODEPOSITION ...
ELECTRICAL AND STRUCTURAL PROPERTIES OF ZnSe THIN FILMS BY ELECTRODEPOSITION ...ELECTRICAL AND STRUCTURAL PROPERTIES OF ZnSe THIN FILMS BY ELECTRODEPOSITION ...
ELECTRICAL AND STRUCTURAL PROPERTIES OF ZnSe THIN FILMS BY ELECTRODEPOSITION ...IKHIOYA IMOSOBOMEH LUCKY
 
ELECTRICAL AND STRUCTURAL PROPERTIES OF ZnSe THIN FILMS BY ELECTRODEPOSITION ...
ELECTRICAL AND STRUCTURAL PROPERTIES OF ZnSe THIN FILMS BY ELECTRODEPOSITION ...ELECTRICAL AND STRUCTURAL PROPERTIES OF ZnSe THIN FILMS BY ELECTRODEPOSITION ...
ELECTRICAL AND STRUCTURAL PROPERTIES OF ZnSe THIN FILMS BY ELECTRODEPOSITION ...IKHIOYA IMOSOBOMEH LUCKY
 

Similar to Investigation of the Effects of Fullerene addition and Plasma Exposure on Optical Properties of Polystyrene Films (20)

Study of highly broadening Photonic band gaps extension in one-dimensional Me...
Study of highly broadening Photonic band gaps extension in one-dimensional Me...Study of highly broadening Photonic band gaps extension in one-dimensional Me...
Study of highly broadening Photonic band gaps extension in one-dimensional Me...
 
11.the optical constants of highly absorbing films using the spectral reflect...
11.the optical constants of highly absorbing films using the spectral reflect...11.the optical constants of highly absorbing films using the spectral reflect...
11.the optical constants of highly absorbing films using the spectral reflect...
 
Preparation of (pomegranate peel polystyrene) composites and study their opt...
Preparation of (pomegranate peel  polystyrene) composites and study their opt...Preparation of (pomegranate peel  polystyrene) composites and study their opt...
Preparation of (pomegranate peel polystyrene) composites and study their opt...
 
absorption-spectrum-poly
absorption-spectrum-polyabsorption-spectrum-poly
absorption-spectrum-poly
 
Characterization of Polyaniline for Optical and Electrical Properties
Characterization of Polyaniline for Optical and Electrical PropertiesCharacterization of Polyaniline for Optical and Electrical Properties
Characterization of Polyaniline for Optical and Electrical Properties
 
OPTICAL CHARACTERISTICS OF PULSE PLATED CuInS2 FILMS
OPTICAL CHARACTERISTICS OF PULSE PLATED CuInS2 FILMSOPTICAL CHARACTERISTICS OF PULSE PLATED CuInS2 FILMS
OPTICAL CHARACTERISTICS OF PULSE PLATED CuInS2 FILMS
 
The International Journal of Engineering and Science
The International Journal of Engineering and ScienceThe International Journal of Engineering and Science
The International Journal of Engineering and Science
 
Non-parabolicity and band gap renormalisation in Si doped ZnO
Non-parabolicity and band gap renormalisation in Si doped ZnONon-parabolicity and band gap renormalisation in Si doped ZnO
Non-parabolicity and band gap renormalisation in Si doped ZnO
 
Spectral studies of praseodymium doped heavy metal borate glass systems
Spectral studies of praseodymium doped heavy metal borate glass systemsSpectral studies of praseodymium doped heavy metal borate glass systems
Spectral studies of praseodymium doped heavy metal borate glass systems
 
Study the physical properties of some alloy materials and effect of gamma rad...
Study the physical properties of some alloy materials and effect of gamma rad...Study the physical properties of some alloy materials and effect of gamma rad...
Study the physical properties of some alloy materials and effect of gamma rad...
 
uv-vis-solid (1).pdf
uv-vis-solid (1).pdfuv-vis-solid (1).pdf
uv-vis-solid (1).pdf
 
Surface and volume energy loss , optical conductivity of rhodamine 6 g dye (...
Surface and volume energy loss , optical conductivity  of rhodamine 6 g dye (...Surface and volume energy loss , optical conductivity  of rhodamine 6 g dye (...
Surface and volume energy loss , optical conductivity of rhodamine 6 g dye (...
 
TUNABLE BROADBAND ALL-DIELECTRIC PERFECT ABSORBER BASED ON PHASE CHANGE MATERIAL
TUNABLE BROADBAND ALL-DIELECTRIC PERFECT ABSORBER BASED ON PHASE CHANGE MATERIALTUNABLE BROADBAND ALL-DIELECTRIC PERFECT ABSORBER BASED ON PHASE CHANGE MATERIAL
TUNABLE BROADBAND ALL-DIELECTRIC PERFECT ABSORBER BASED ON PHASE CHANGE MATERIAL
 
TUNABLE BROADBAND ALL-DIELECTRIC PERFECT ABSORBER BASED ON PHASE CHANGE MATERIAL
TUNABLE BROADBAND ALL-DIELECTRIC PERFECT ABSORBER BASED ON PHASE CHANGE MATERIALTUNABLE BROADBAND ALL-DIELECTRIC PERFECT ABSORBER BASED ON PHASE CHANGE MATERIAL
TUNABLE BROADBAND ALL-DIELECTRIC PERFECT ABSORBER BASED ON PHASE CHANGE MATERIAL
 
A simple photochemical_method_to_synthes
A simple photochemical_method_to_synthesA simple photochemical_method_to_synthes
A simple photochemical_method_to_synthes
 
A simple photochemical_method_to_synthes
A simple photochemical_method_to_synthesA simple photochemical_method_to_synthes
A simple photochemical_method_to_synthes
 
A simple photochemical_method_to_synthes
A simple photochemical_method_to_synthesA simple photochemical_method_to_synthes
A simple photochemical_method_to_synthes
 
ELECTRICAL AND STRUCTURAL PROPERTIES OF ZnSe THIN FILMS BY ELECTRODEPOSITION ...
ELECTRICAL AND STRUCTURAL PROPERTIES OF ZnSe THIN FILMS BY ELECTRODEPOSITION ...ELECTRICAL AND STRUCTURAL PROPERTIES OF ZnSe THIN FILMS BY ELECTRODEPOSITION ...
ELECTRICAL AND STRUCTURAL PROPERTIES OF ZnSe THIN FILMS BY ELECTRODEPOSITION ...
 
ELECTRICAL AND STRUCTURAL PROPERTIES OF ZnSe THIN FILMS BY ELECTRODEPOSITION ...
ELECTRICAL AND STRUCTURAL PROPERTIES OF ZnSe THIN FILMS BY ELECTRODEPOSITION ...ELECTRICAL AND STRUCTURAL PROPERTIES OF ZnSe THIN FILMS BY ELECTRODEPOSITION ...
ELECTRICAL AND STRUCTURAL PROPERTIES OF ZnSe THIN FILMS BY ELECTRODEPOSITION ...
 
20320140501011
2032014050101120320140501011
20320140501011
 

More from iosrjce

An Examination of Effectuation Dimension as Financing Practice of Small and M...
An Examination of Effectuation Dimension as Financing Practice of Small and M...An Examination of Effectuation Dimension as Financing Practice of Small and M...
An Examination of Effectuation Dimension as Financing Practice of Small and M...iosrjce
 
Does Goods and Services Tax (GST) Leads to Indian Economic Development?
Does Goods and Services Tax (GST) Leads to Indian Economic Development?Does Goods and Services Tax (GST) Leads to Indian Economic Development?
Does Goods and Services Tax (GST) Leads to Indian Economic Development?iosrjce
 
Childhood Factors that influence success in later life
Childhood Factors that influence success in later lifeChildhood Factors that influence success in later life
Childhood Factors that influence success in later lifeiosrjce
 
Emotional Intelligence and Work Performance Relationship: A Study on Sales Pe...
Emotional Intelligence and Work Performance Relationship: A Study on Sales Pe...Emotional Intelligence and Work Performance Relationship: A Study on Sales Pe...
Emotional Intelligence and Work Performance Relationship: A Study on Sales Pe...iosrjce
 
Customer’s Acceptance of Internet Banking in Dubai
Customer’s Acceptance of Internet Banking in DubaiCustomer’s Acceptance of Internet Banking in Dubai
Customer’s Acceptance of Internet Banking in Dubaiiosrjce
 
A Study of Employee Satisfaction relating to Job Security & Working Hours amo...
A Study of Employee Satisfaction relating to Job Security & Working Hours amo...A Study of Employee Satisfaction relating to Job Security & Working Hours amo...
A Study of Employee Satisfaction relating to Job Security & Working Hours amo...iosrjce
 
Consumer Perspectives on Brand Preference: A Choice Based Model Approach
Consumer Perspectives on Brand Preference: A Choice Based Model ApproachConsumer Perspectives on Brand Preference: A Choice Based Model Approach
Consumer Perspectives on Brand Preference: A Choice Based Model Approachiosrjce
 
Student`S Approach towards Social Network Sites
Student`S Approach towards Social Network SitesStudent`S Approach towards Social Network Sites
Student`S Approach towards Social Network Sitesiosrjce
 
Broadcast Management in Nigeria: The systems approach as an imperative
Broadcast Management in Nigeria: The systems approach as an imperativeBroadcast Management in Nigeria: The systems approach as an imperative
Broadcast Management in Nigeria: The systems approach as an imperativeiosrjce
 
A Study on Retailer’s Perception on Soya Products with Special Reference to T...
A Study on Retailer’s Perception on Soya Products with Special Reference to T...A Study on Retailer’s Perception on Soya Products with Special Reference to T...
A Study on Retailer’s Perception on Soya Products with Special Reference to T...iosrjce
 
A Study Factors Influence on Organisation Citizenship Behaviour in Corporate ...
A Study Factors Influence on Organisation Citizenship Behaviour in Corporate ...A Study Factors Influence on Organisation Citizenship Behaviour in Corporate ...
A Study Factors Influence on Organisation Citizenship Behaviour in Corporate ...iosrjce
 
Consumers’ Behaviour on Sony Xperia: A Case Study on Bangladesh
Consumers’ Behaviour on Sony Xperia: A Case Study on BangladeshConsumers’ Behaviour on Sony Xperia: A Case Study on Bangladesh
Consumers’ Behaviour on Sony Xperia: A Case Study on Bangladeshiosrjce
 
Design of a Balanced Scorecard on Nonprofit Organizations (Study on Yayasan P...
Design of a Balanced Scorecard on Nonprofit Organizations (Study on Yayasan P...Design of a Balanced Scorecard on Nonprofit Organizations (Study on Yayasan P...
Design of a Balanced Scorecard on Nonprofit Organizations (Study on Yayasan P...iosrjce
 
Public Sector Reforms and Outsourcing Services in Nigeria: An Empirical Evalu...
Public Sector Reforms and Outsourcing Services in Nigeria: An Empirical Evalu...Public Sector Reforms and Outsourcing Services in Nigeria: An Empirical Evalu...
Public Sector Reforms and Outsourcing Services in Nigeria: An Empirical Evalu...iosrjce
 
Media Innovations and its Impact on Brand awareness & Consideration
Media Innovations and its Impact on Brand awareness & ConsiderationMedia Innovations and its Impact on Brand awareness & Consideration
Media Innovations and its Impact on Brand awareness & Considerationiosrjce
 
Customer experience in supermarkets and hypermarkets – A comparative study
Customer experience in supermarkets and hypermarkets – A comparative studyCustomer experience in supermarkets and hypermarkets – A comparative study
Customer experience in supermarkets and hypermarkets – A comparative studyiosrjce
 
Social Media and Small Businesses: A Combinational Strategic Approach under t...
Social Media and Small Businesses: A Combinational Strategic Approach under t...Social Media and Small Businesses: A Combinational Strategic Approach under t...
Social Media and Small Businesses: A Combinational Strategic Approach under t...iosrjce
 
Secretarial Performance and the Gender Question (A Study of Selected Tertiary...
Secretarial Performance and the Gender Question (A Study of Selected Tertiary...Secretarial Performance and the Gender Question (A Study of Selected Tertiary...
Secretarial Performance and the Gender Question (A Study of Selected Tertiary...iosrjce
 
Implementation of Quality Management principles at Zimbabwe Open University (...
Implementation of Quality Management principles at Zimbabwe Open University (...Implementation of Quality Management principles at Zimbabwe Open University (...
Implementation of Quality Management principles at Zimbabwe Open University (...iosrjce
 
Organizational Conflicts Management In Selected Organizaions In Lagos State, ...
Organizational Conflicts Management In Selected Organizaions In Lagos State, ...Organizational Conflicts Management In Selected Organizaions In Lagos State, ...
Organizational Conflicts Management In Selected Organizaions In Lagos State, ...iosrjce
 

More from iosrjce (20)

An Examination of Effectuation Dimension as Financing Practice of Small and M...
An Examination of Effectuation Dimension as Financing Practice of Small and M...An Examination of Effectuation Dimension as Financing Practice of Small and M...
An Examination of Effectuation Dimension as Financing Practice of Small and M...
 
Does Goods and Services Tax (GST) Leads to Indian Economic Development?
Does Goods and Services Tax (GST) Leads to Indian Economic Development?Does Goods and Services Tax (GST) Leads to Indian Economic Development?
Does Goods and Services Tax (GST) Leads to Indian Economic Development?
 
Childhood Factors that influence success in later life
Childhood Factors that influence success in later lifeChildhood Factors that influence success in later life
Childhood Factors that influence success in later life
 
Emotional Intelligence and Work Performance Relationship: A Study on Sales Pe...
Emotional Intelligence and Work Performance Relationship: A Study on Sales Pe...Emotional Intelligence and Work Performance Relationship: A Study on Sales Pe...
Emotional Intelligence and Work Performance Relationship: A Study on Sales Pe...
 
Customer’s Acceptance of Internet Banking in Dubai
Customer’s Acceptance of Internet Banking in DubaiCustomer’s Acceptance of Internet Banking in Dubai
Customer’s Acceptance of Internet Banking in Dubai
 
A Study of Employee Satisfaction relating to Job Security & Working Hours amo...
A Study of Employee Satisfaction relating to Job Security & Working Hours amo...A Study of Employee Satisfaction relating to Job Security & Working Hours amo...
A Study of Employee Satisfaction relating to Job Security & Working Hours amo...
 
Consumer Perspectives on Brand Preference: A Choice Based Model Approach
Consumer Perspectives on Brand Preference: A Choice Based Model ApproachConsumer Perspectives on Brand Preference: A Choice Based Model Approach
Consumer Perspectives on Brand Preference: A Choice Based Model Approach
 
Student`S Approach towards Social Network Sites
Student`S Approach towards Social Network SitesStudent`S Approach towards Social Network Sites
Student`S Approach towards Social Network Sites
 
Broadcast Management in Nigeria: The systems approach as an imperative
Broadcast Management in Nigeria: The systems approach as an imperativeBroadcast Management in Nigeria: The systems approach as an imperative
Broadcast Management in Nigeria: The systems approach as an imperative
 
A Study on Retailer’s Perception on Soya Products with Special Reference to T...
A Study on Retailer’s Perception on Soya Products with Special Reference to T...A Study on Retailer’s Perception on Soya Products with Special Reference to T...
A Study on Retailer’s Perception on Soya Products with Special Reference to T...
 
A Study Factors Influence on Organisation Citizenship Behaviour in Corporate ...
A Study Factors Influence on Organisation Citizenship Behaviour in Corporate ...A Study Factors Influence on Organisation Citizenship Behaviour in Corporate ...
A Study Factors Influence on Organisation Citizenship Behaviour in Corporate ...
 
Consumers’ Behaviour on Sony Xperia: A Case Study on Bangladesh
Consumers’ Behaviour on Sony Xperia: A Case Study on BangladeshConsumers’ Behaviour on Sony Xperia: A Case Study on Bangladesh
Consumers’ Behaviour on Sony Xperia: A Case Study on Bangladesh
 
Design of a Balanced Scorecard on Nonprofit Organizations (Study on Yayasan P...
Design of a Balanced Scorecard on Nonprofit Organizations (Study on Yayasan P...Design of a Balanced Scorecard on Nonprofit Organizations (Study on Yayasan P...
Design of a Balanced Scorecard on Nonprofit Organizations (Study on Yayasan P...
 
Public Sector Reforms and Outsourcing Services in Nigeria: An Empirical Evalu...
Public Sector Reforms and Outsourcing Services in Nigeria: An Empirical Evalu...Public Sector Reforms and Outsourcing Services in Nigeria: An Empirical Evalu...
Public Sector Reforms and Outsourcing Services in Nigeria: An Empirical Evalu...
 
Media Innovations and its Impact on Brand awareness & Consideration
Media Innovations and its Impact on Brand awareness & ConsiderationMedia Innovations and its Impact on Brand awareness & Consideration
Media Innovations and its Impact on Brand awareness & Consideration
 
Customer experience in supermarkets and hypermarkets – A comparative study
Customer experience in supermarkets and hypermarkets – A comparative studyCustomer experience in supermarkets and hypermarkets – A comparative study
Customer experience in supermarkets and hypermarkets – A comparative study
 
Social Media and Small Businesses: A Combinational Strategic Approach under t...
Social Media and Small Businesses: A Combinational Strategic Approach under t...Social Media and Small Businesses: A Combinational Strategic Approach under t...
Social Media and Small Businesses: A Combinational Strategic Approach under t...
 
Secretarial Performance and the Gender Question (A Study of Selected Tertiary...
Secretarial Performance and the Gender Question (A Study of Selected Tertiary...Secretarial Performance and the Gender Question (A Study of Selected Tertiary...
Secretarial Performance and the Gender Question (A Study of Selected Tertiary...
 
Implementation of Quality Management principles at Zimbabwe Open University (...
Implementation of Quality Management principles at Zimbabwe Open University (...Implementation of Quality Management principles at Zimbabwe Open University (...
Implementation of Quality Management principles at Zimbabwe Open University (...
 
Organizational Conflicts Management In Selected Organizaions In Lagos State, ...
Organizational Conflicts Management In Selected Organizaions In Lagos State, ...Organizational Conflicts Management In Selected Organizaions In Lagos State, ...
Organizational Conflicts Management In Selected Organizaions In Lagos State, ...
 

Recently uploaded

Solution chemistry, Moral and Normal solutions
Solution chemistry, Moral and Normal solutionsSolution chemistry, Moral and Normal solutions
Solution chemistry, Moral and Normal solutionsHajira Mahmood
 
Pests of jatropha_Bionomics_identification_Dr.UPR.pdf
Pests of jatropha_Bionomics_identification_Dr.UPR.pdfPests of jatropha_Bionomics_identification_Dr.UPR.pdf
Pests of jatropha_Bionomics_identification_Dr.UPR.pdfPirithiRaju
 
OECD bibliometric indicators: Selected highlights, April 2024
OECD bibliometric indicators: Selected highlights, April 2024OECD bibliometric indicators: Selected highlights, April 2024
OECD bibliometric indicators: Selected highlights, April 2024innovationoecd
 
STOPPED FLOW METHOD & APPLICATION MURUGAVENI B.pptx
STOPPED FLOW METHOD & APPLICATION MURUGAVENI B.pptxSTOPPED FLOW METHOD & APPLICATION MURUGAVENI B.pptx
STOPPED FLOW METHOD & APPLICATION MURUGAVENI B.pptxMurugaveni B
 
Pests of castor_Binomics_Identification_Dr.UPR.pdf
Pests of castor_Binomics_Identification_Dr.UPR.pdfPests of castor_Binomics_Identification_Dr.UPR.pdf
Pests of castor_Binomics_Identification_Dr.UPR.pdfPirithiRaju
 
GenBio2 - Lesson 1 - Introduction to Genetics.pptx
GenBio2 - Lesson 1 - Introduction to Genetics.pptxGenBio2 - Lesson 1 - Introduction to Genetics.pptx
GenBio2 - Lesson 1 - Introduction to Genetics.pptxBerniceCayabyab1
 
Microphone- characteristics,carbon microphone, dynamic microphone.pptx
Microphone- characteristics,carbon microphone, dynamic microphone.pptxMicrophone- characteristics,carbon microphone, dynamic microphone.pptx
Microphone- characteristics,carbon microphone, dynamic microphone.pptxpriyankatabhane
 
Is RISC-V ready for HPC workload? Maybe?
Is RISC-V ready for HPC workload? Maybe?Is RISC-V ready for HPC workload? Maybe?
Is RISC-V ready for HPC workload? Maybe?Patrick Diehl
 
Transposable elements in prokaryotes.ppt
Transposable elements in prokaryotes.pptTransposable elements in prokaryotes.ppt
Transposable elements in prokaryotes.pptArshadWarsi13
 
Call Girls In Nihal Vihar Delhi ❤️8860477959 Looking Escorts In 24/7 Delhi NCR
Call Girls In Nihal Vihar Delhi ❤️8860477959 Looking Escorts In 24/7 Delhi NCRCall Girls In Nihal Vihar Delhi ❤️8860477959 Looking Escorts In 24/7 Delhi NCR
Call Girls In Nihal Vihar Delhi ❤️8860477959 Looking Escorts In 24/7 Delhi NCRlizamodels9
 
Twin's paradox experiment is a meassurement of the extra dimensions.pptx
Twin's paradox experiment is a meassurement of the extra dimensions.pptxTwin's paradox experiment is a meassurement of the extra dimensions.pptx
Twin's paradox experiment is a meassurement of the extra dimensions.pptxEran Akiva Sinbar
 
Environmental Biotechnology Topic:- Microbial Biosensor
Environmental Biotechnology Topic:- Microbial BiosensorEnvironmental Biotechnology Topic:- Microbial Biosensor
Environmental Biotechnology Topic:- Microbial Biosensorsonawaneprad
 
Call Girls in Mayapuri Delhi 💯Call Us 🔝9953322196🔝 💯Escort.
Call Girls in Mayapuri Delhi 💯Call Us 🔝9953322196🔝 💯Escort.Call Girls in Mayapuri Delhi 💯Call Us 🔝9953322196🔝 💯Escort.
Call Girls in Mayapuri Delhi 💯Call Us 🔝9953322196🔝 💯Escort.aasikanpl
 
‏‏VIRUS - 123455555555555555555555555555555555555555
‏‏VIRUS -  123455555555555555555555555555555555555555‏‏VIRUS -  123455555555555555555555555555555555555555
‏‏VIRUS - 123455555555555555555555555555555555555555kikilily0909
 
LIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptx
LIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptxLIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptx
LIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptxmalonesandreagweneth
 
RESPIRATORY ADAPTATIONS TO HYPOXIA IN HUMNAS.pptx
RESPIRATORY ADAPTATIONS TO HYPOXIA IN HUMNAS.pptxRESPIRATORY ADAPTATIONS TO HYPOXIA IN HUMNAS.pptx
RESPIRATORY ADAPTATIONS TO HYPOXIA IN HUMNAS.pptxFarihaAbdulRasheed
 
(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)
(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)
(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)riyaescorts54
 
Call Girls in Munirka Delhi 💯Call Us 🔝8264348440🔝
Call Girls in Munirka Delhi 💯Call Us 🔝8264348440🔝Call Girls in Munirka Delhi 💯Call Us 🔝8264348440🔝
Call Girls in Munirka Delhi 💯Call Us 🔝8264348440🔝soniya singh
 

Recently uploaded (20)

Solution chemistry, Moral and Normal solutions
Solution chemistry, Moral and Normal solutionsSolution chemistry, Moral and Normal solutions
Solution chemistry, Moral and Normal solutions
 
Pests of jatropha_Bionomics_identification_Dr.UPR.pdf
Pests of jatropha_Bionomics_identification_Dr.UPR.pdfPests of jatropha_Bionomics_identification_Dr.UPR.pdf
Pests of jatropha_Bionomics_identification_Dr.UPR.pdf
 
OECD bibliometric indicators: Selected highlights, April 2024
OECD bibliometric indicators: Selected highlights, April 2024OECD bibliometric indicators: Selected highlights, April 2024
OECD bibliometric indicators: Selected highlights, April 2024
 
STOPPED FLOW METHOD & APPLICATION MURUGAVENI B.pptx
STOPPED FLOW METHOD & APPLICATION MURUGAVENI B.pptxSTOPPED FLOW METHOD & APPLICATION MURUGAVENI B.pptx
STOPPED FLOW METHOD & APPLICATION MURUGAVENI B.pptx
 
Pests of castor_Binomics_Identification_Dr.UPR.pdf
Pests of castor_Binomics_Identification_Dr.UPR.pdfPests of castor_Binomics_Identification_Dr.UPR.pdf
Pests of castor_Binomics_Identification_Dr.UPR.pdf
 
GenBio2 - Lesson 1 - Introduction to Genetics.pptx
GenBio2 - Lesson 1 - Introduction to Genetics.pptxGenBio2 - Lesson 1 - Introduction to Genetics.pptx
GenBio2 - Lesson 1 - Introduction to Genetics.pptx
 
Microphone- characteristics,carbon microphone, dynamic microphone.pptx
Microphone- characteristics,carbon microphone, dynamic microphone.pptxMicrophone- characteristics,carbon microphone, dynamic microphone.pptx
Microphone- characteristics,carbon microphone, dynamic microphone.pptx
 
Is RISC-V ready for HPC workload? Maybe?
Is RISC-V ready for HPC workload? Maybe?Is RISC-V ready for HPC workload? Maybe?
Is RISC-V ready for HPC workload? Maybe?
 
Transposable elements in prokaryotes.ppt
Transposable elements in prokaryotes.pptTransposable elements in prokaryotes.ppt
Transposable elements in prokaryotes.ppt
 
Call Girls In Nihal Vihar Delhi ❤️8860477959 Looking Escorts In 24/7 Delhi NCR
Call Girls In Nihal Vihar Delhi ❤️8860477959 Looking Escorts In 24/7 Delhi NCRCall Girls In Nihal Vihar Delhi ❤️8860477959 Looking Escorts In 24/7 Delhi NCR
Call Girls In Nihal Vihar Delhi ❤️8860477959 Looking Escorts In 24/7 Delhi NCR
 
Twin's paradox experiment is a meassurement of the extra dimensions.pptx
Twin's paradox experiment is a meassurement of the extra dimensions.pptxTwin's paradox experiment is a meassurement of the extra dimensions.pptx
Twin's paradox experiment is a meassurement of the extra dimensions.pptx
 
Hot Sexy call girls in Moti Nagar,🔝 9953056974 🔝 escort Service
Hot Sexy call girls in  Moti Nagar,🔝 9953056974 🔝 escort ServiceHot Sexy call girls in  Moti Nagar,🔝 9953056974 🔝 escort Service
Hot Sexy call girls in Moti Nagar,🔝 9953056974 🔝 escort Service
 
Environmental Biotechnology Topic:- Microbial Biosensor
Environmental Biotechnology Topic:- Microbial BiosensorEnvironmental Biotechnology Topic:- Microbial Biosensor
Environmental Biotechnology Topic:- Microbial Biosensor
 
Engler and Prantl system of classification in plant taxonomy
Engler and Prantl system of classification in plant taxonomyEngler and Prantl system of classification in plant taxonomy
Engler and Prantl system of classification in plant taxonomy
 
Call Girls in Mayapuri Delhi 💯Call Us 🔝9953322196🔝 💯Escort.
Call Girls in Mayapuri Delhi 💯Call Us 🔝9953322196🔝 💯Escort.Call Girls in Mayapuri Delhi 💯Call Us 🔝9953322196🔝 💯Escort.
Call Girls in Mayapuri Delhi 💯Call Us 🔝9953322196🔝 💯Escort.
 
‏‏VIRUS - 123455555555555555555555555555555555555555
‏‏VIRUS -  123455555555555555555555555555555555555555‏‏VIRUS -  123455555555555555555555555555555555555555
‏‏VIRUS - 123455555555555555555555555555555555555555
 
LIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptx
LIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptxLIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptx
LIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptx
 
RESPIRATORY ADAPTATIONS TO HYPOXIA IN HUMNAS.pptx
RESPIRATORY ADAPTATIONS TO HYPOXIA IN HUMNAS.pptxRESPIRATORY ADAPTATIONS TO HYPOXIA IN HUMNAS.pptx
RESPIRATORY ADAPTATIONS TO HYPOXIA IN HUMNAS.pptx
 
(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)
(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)
(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)
 
Call Girls in Munirka Delhi 💯Call Us 🔝8264348440🔝
Call Girls in Munirka Delhi 💯Call Us 🔝8264348440🔝Call Girls in Munirka Delhi 💯Call Us 🔝8264348440🔝
Call Girls in Munirka Delhi 💯Call Us 🔝8264348440🔝
 

Investigation of the Effects of Fullerene addition and Plasma Exposure on Optical Properties of Polystyrene Films

  • 1. IOSR Journal of Applied Physics (IOSR-JAP) e-ISSN: 2278-4861.Volume 7, Issue 6 Ver. II (Nov. - Dec. 2015), PP 64-70 www.iosrjournals DOI: 10.9790/4861-07626470 www.iosrjournals.org 64 | Page Investigation of the Effects of Fullerene addition and Plasma Exposure on Optical Properties of Polystyrene Films N. M. Elsayed*, O. F. Farag, M. H. Elghazaly and D. A. Nasrallah Physics Department, Faculty of Science, Zagazig University, Egypt Abstract: In the present study, two different methods of modification (Fullerene addition and plasma exposure) were applied to tune the basic optical properties and optical constants of the polystyrene films with thickness in the range (0.22-0.25 mm). The samples have been investigated via absorbance, transmittance and reflectance spectra, and characterized in the wavelength range 200–900 nm. The optical band gap Eg is found to be decreased after Fullerene addition while it is not changed with plasma exposure. The optical constants (refractive index, extinction coefficient, and real and imaginary parts of the dielectric constant) showed clear changes with Fullerene addition and plasma exposure. Keywords: polystyrene/ fullerene/ plasma exposure/ optical constants/ optical band gap/ doping I. Introduction In recent years, polymers with different optical properties have been attracted much attentions due to their applications in the sensors, light-emitting diodes and others [1]. The optical study is very interesting because it provides an important information about the absorbance, transmittance and reflectance of the observed polymeric films [2]. The optical absorption and especially the absorption edge present a useful method for the investigation of optically induced transition and for getting information about the band structure, the band tail and the energy gap of the polymeric materials under consideration [3]. The optical properties of polymeric materials can be easily tuned by controlling contents of the different concentrations [1] and by physical surface modification. Physical surface modification by flame, corona treatment, UV, gamma-ray, electron beam irradiations, ion beam, plasma, and laser treatments [4, 5, 6, 7] lead the breakage of covalent bonds, promotion of cross linkages, formation of carbon clusters, liberation of volatile species and in certain cases creation of new chemical bonds [8]. All these processes introduce so-called defects inside the material that are responsible for change in the optical, electrical, mechanical and chemical properties of the material [9]. Polystyrene (PS) is amorphous polymer with bulky side groups. General purposes PS are hard, rigid, and transparent at room temperature and glass like thermoplastic material which can be soften and distort under heat. It is soluble in aromatic hydrocarbon solvents, cyclohexane and chlorinated hydrocarbons [10]. Fullerene (C60) is a widely studied material due to its unique optical, electrical, and chemical properties [11]. It has potential applications in hetero-junction solar cell as well as medical sciences [12]. Incorporation of fullerene and nanotubes into chemical composition of polymers gives one more opportunities for their study and application as composite materials, films, and fibers serving different purposes [13]. Plasma treatment have distinct advantages over other methods, modifications are limited to the surface layer to a depth of typically 0.005 to 0.05 μm without affecting the bulk properties of the polymer [14]. Moreover, it is a rabid and environmentally friendly process [15]. The effect of plasma treatment depends on a verity of parameters such as kind of plasma (DC, radio frequency (RF) or microwave (MW)), the discharge power, the pressure of the gas, as well as exposure time [16]. In the present paper, we study the effects of fullerene addition and DC N2 plasma on the basic optical properties and optical constants of the polystyrene films. II. Materials And Methods 1. Samples preparation The studied samples were prepared by the casting technique. PS of molecular weight 192,000 in the form of grains and Fullerene (C60) of molecular weight 720.64 were supplied by Sigma- Aldrich Company. PS and Fullerene (C60) were dissolved in toluene with purity 99.99 %, the complete dissolution was obtained using a magnetic stirrer at room temperature for half-hour. A mixture of the solution was cast onto a clean glass Petri dish. The whole assembly was placed in a dust free chamber and allowed to evaporate the solvent slowly in air at room temperature for one week. The thickness of the films was in the range of (0.22-0.25 mm), it was determined using micrometer at different places in each film and an average was taken. The Fullerene content in films prepared in this study are 0, 1× 10-5 , 5 × 10-5 , 1× 10-4 , 5 × 10-4 and 1× 10-3 mol. %.
  • 2. Investigation of the Effects of Fullerene addition and Plasma Exposure on Optical Properties… DOI: 10.9790/4861-07626470 www.iosrjournals.org 65 | Page 2. Plasma treatment Figure (1) represents a schematic diagram of the DC glow discharge setup used for surface treatment of the PS films. The setup consists of a Pyrex tube of (18 cm) long and (13 cm) diameter closed at each end with aluminum plate. Two planes circular stainless steel plates of (5 cm radius) represent the two electrodes are connected to each other with four isolated rods keeping the spacing constant at (7 cm). The two electrodes move axially forward and backward as a unit controlled by a handle outside the tube. The base pressure is attained into the tube at (10-3 Torr) by using a rotary pump (Edwards H. vacuum pump, model ED 200) then the N2 gas is allowed to inter the tube throw a controllable needle valve. Plasma properties were kept constant during the experiment, as the gas pressure was 0.4 Torr, and the discharge power was about 3.5 W. The exposure time was varied from 15 to 120 minutes. The films were cut to give sample size (1.5 x 2 cm). The samples were supported on a glass rode and put in front of the cathode at the edge of the negative glow. 3. UV-Visible Spectroscopy Ultra violet and visible (UV/VIS) absorbance, transmittance and reflectance spectra of pristine and plasma treated PS and pristine (PS-C60) films were recorded over a wavelength range 200–900 nm using a Perkin–Elmer Lambda 950 spectrophotometer. The optical absorption and reflectance spectra were analyzed to determine optical constants such as refractive index n, extinction coefficient k, and absorption coefficient α. Analysis of the absorption coefficient was also carried out to determine the optical band gap. III. Results And Discussion 1. Optical absorption spectra Figure (2.a) shows UV-Visible spectra of the PS films filled with different concentrations of Fullerene (C60). Pure PS exhibit strong absorption over the 200-280 nm range (max 240 nm). The peak at 240 nm can be attributed to the phenyl ring in each repeat unit [17]. On the other hand, Fullerene (C60) exhibit strong absorption peak at 335 nm and two weak-broad bands between 450 and 640 nm which are attributed to the π-π transition and the transition from HOMO to LUMO, respectively [18]. UV-Visible spectra recorded for the plasma treated PS films are displayed in Figure (2.b) for different durations. An increase of absorbance is observed in spectra of samples exposed to plasma, which indicates that absorbing photoproducts (e.g. conjugated double bonds) are present in PS [17]. 2. Optical energy gap The variation of the optical bulk absorption coefficient, α, with wavelength is a unique parameter of the medium. The importance of the absorption coefficient is related to the valuable information that can be obtained, such as the electronic band structure and the optical energy band gap. The absorption coefficient can be estimated from the optical absorption spectrum owing to the following equation [3]: dA /303.2)(  (1) where A is the absorbance and d is the film thickness. Figure (2): The UV-Visible absorption spectra, (a) for PS films filled with different concentrations of C60 and (b) for pristine and plasma treated PS films for different durations.
  • 3. Investigation of the Effects of Fullerene addition and Plasma Exposure on Optical Properties… DOI: 10.9790/4861-07626470 www.iosrjournals.org 66 | Page Figure (2): The UV-Visible absorption spectra, (a) for PS films filled with different concentrations of C60 and (b) for pristine and plasma treated PS films for different durations. The relation between the optical energy band gap, absorption coefficient and energy (hv) of the incident photon is given by [19,20]: r g EhBh )(   (2) where α is the absorption coefficient, ν is the frequency, h is the Planck’s constant, B is a constant, Eg is the optical energy band gap between the valence and the conduction bands and r is the power that characterizes the transition process. Specifically, r can take the values 1/2, 3/2, 2, and 3 for transitions designated as direct allowed, direct forbidden, indirect allowed and indirect forbidden, respectively. The usual method to determine the optical energy band gap is to plot a graph between (hνα)1/r and hv. The best fit of indirect transitions is obtained for r = 2, meanwhile for a direct transition the best fit is obtained for r = 1/2 . The indirect optical energy band gap is determined by plotting (α hν)1/2 against the photon energy (hv). The extrapolation of the straight parts of the curves to the energy axis (hv) yields the indirect optical energy band gap. The variation of the absorption coefficient (α) versus photon energy (hν) for pure and doped PS with C60 of different concentrations is shown in Figure (3.a). The absorption coefficient of samples increased with increasing C60 concentrations in the film. Also, it can be seen that the behavior of (α) is similar to the absorption spectra. Figure (3.b) shows the absorption coefficient (α) as function of photon energy (hν) for pristine and nitrogen plasma treated PS films at different durations. It is clear from this figure that the values of (α) showed increase with increase in the exposure time. The increase in (α) with increasing the exposure time is attributed to same reasons that were discussed for the increase in the absorbance of UV-Visible spectra. Figure (4) displays the C60 content dependence of Eg and the results are listed in table 1. It is clear that the values of indirect optical energy band gap are decreased with increasing C60 content in PS films. Such behavior is in accordance with those reported previously [21, 22]. The decrease in the optical energy band gap with filling may be explained by increasing the incorporation of C60 contents in the polymeric host matrix. This
  • 4. Investigation of the Effects of Fullerene addition and Plasma Exposure on Optical Properties… DOI: 10.9790/4861-07626470 www.iosrjournals.org 67 | Page introduces additional absorption bands in the UV and visible regions of the optical spectra as shown in UV- Visible spectra (fig. 2a). The values of optical energy band gap for pristine and plasma treated samples are tabulated in Table II. As can be seen the values of indirect optical energy band gap are not changed with the increase in the exposure time. This may be due to low power of the applied plasma [23]. Table I: Displays the C60 content dependence of Eg values of indirect transition. C60 Concentration ( mol. %) Eg (indirect) (eV) 0 4.22 1×10-5 4.14 5×10-5 3.56 1×10-4 3.26 5×10-4 2.42 1×10-3 2.38 Table II: Displays the values of optical energy band gaps for pristine and plasma treated samples. 3. The Refractive index (n) The index of refraction of a material is the ratio of the velocity of the light in vacuum to that of the specimen. The refractive index of the films was calculated by the following equation [24]: 2 2 )1( 4 1 1 k R R R R n            (3) where R is the reflectance and k is the extinction coefficient. The extinction coefficient (k) describes the properties of the material with respect to light of a given wavelength and indicates the absorption changes when the electromagnetic wave propagates through the material. The extinction coefficient (k) was calculated using the following equation [23]:  4/k (4) where λ is the wavelength and α is the absorption coefficient. Figure (5.a) shows the refractive index as function of wavelength for pure and doped PS with C60 of different concentrations. In this figure, (n) exhibits to decrease with λ for pure and doped films. Also the values of (n) showed increase with increasing C60 concentrations. Moreover, (n) increases from 1.45 to 2.45 at λ = 625 Exposure Time (min.) Eg (indirect) (eV) 0 4.22 15 4.22 30 4.22 60 4.22 120 4.22 Figure (4): The dependence of (α hν)1/2 on the photon energy for PS films filled with different concentrations of C60.
  • 5. Investigation of the Effects of Fullerene addition and Plasma Exposure on Optical Properties… DOI: 10.9790/4861-07626470 www.iosrjournals.org 68 | Page nm (when C60 concentration increases from (0 to 1 × 10-3 ) mol. %. This is a result of increasing the number of atomic refractions due to the increase of the C60 concentrations in the films. Figure (5.b) shows the refractive index as function of wavelength for pristine and nitrogen plasma treated PS films at different durations. It is clear from this figure, that the refractive index for pristine and nitrogen plasma treated PS films decrease with increasing λ. Also the values of (n) showed increase with the increase in the exposure time. This increase in refractive index with increasing the exposure time may be attributed the etching action of the plasma which increase roughness of film surface. Figure (6.a) shows the variations of (k) with λ of pure and doped PS with C60. (k) shows an increasing with increasing C60 concentration. This increase in the values of (k) can be ascribed to high absorption coefficient [25]. This result indicates that the dopant atoms of C60 will modify the structure of PS. C60 dopant has increased the absorbance in the visible region. Figure (6.b) shows (k) as function of wavelength for pristine and nitrogen plasma treated PS films at different durations. It is clear from this figure, that the values of the extinction coefficient showed increase with the increase in the exposure time. The increase in extinction coefficient with increasing the exposure time is attributed to same reason that was discussed for the increase in the absorbance of UV-Visible spectra. IV. Complex dielectric function The complex dielectric constant is defined as the response of the material toward the incident electromagnetic field. The complex dielectric constant of compound ε is divided into two parts real εr, and imaginary εi. The real and imaginary parts of dielectric constant (εr and εi) were calculated by the following equations [26, 27]:
  • 6. Investigation of the Effects of Fullerene addition and Plasma Exposure on Optical Properties… DOI: 10.9790/4861-07626470 www.iosrjournals.org 69 | Page nk kn i r 2 , 22     (5) Figures (7.a and b) show the real and imaginary parts of dielectric constant (εr and εi) as function of wavelength for pure and doped PS with C60 of different concentrations. From Figures 7a and b it is seen that the real and imaginary parts of the dielectric constant decrease with increasing the wavelength. The real part of the dielectric constant is higher than the imaginary part. Figures (8.a and b) show the real and imaginary parts of dielectric constant (εr and εi) as function of wavelength for pristine and nitrogen plasma treated PS films at different durations. It is clear from these figures, that (εr and εi) for pristine and nitrogen plasma treated PS films decrease with increasing λ. Also the values of (εr and εi) showed increase with the increase in the exposure time. It is concluded that the variation of εr mainly depends on n2 because of small values of k2 , while εi mainly depends on the k values which are related to the variation of absorption coefficients. V. Conclusion The present study revealed the significant effects of varying Fullerene content and plasma exposure on optical properties of the polystyrene films. From the experimental results we can conclude that: (1) The values of indirect optical energy band gap are decreased with the increase in the Fullerene content. Meanwhile their values are not changed with the increase in the plasma exposure time. (2) The Refractive index (n) increases by increasing both Fullerene content and plasma exposure time.
  • 7. Investigation of the Effects of Fullerene addition and Plasma Exposure on Optical Properties… DOI: 10.9790/4861-07626470 www.iosrjournals.org 70 | Page (3) The real and imaginary parts of the dielectric constant were showed clear changes with Fullerene addition and plasma exposure. References [1] Alwan T J, Malaysian Polymer Journal, 2010, 5, 204. [2] Deshmukh S H, Burghat D K, Shilaska S N and Deshmukh P T, Indian Journal of Pure & Applied Physics ,2008, 46, 344. [3] El-Khodary A, Physica B: Condensed Matter, 2010, 405, 4301. [4] Cheung R KY Fu, I T L, Mei Y F, Shek C H, Siu G G, Chu P K, Yang W M, Leng Y X, Huang Y X, Tian X B and Yang S Q, Nuclear Instruments and Methods in Physics Research, 2005, 237, 417. [5] Kaczmarek Hand Chaberska H, Applied Surface Science, 2006, 252, 8185. [6] Ozdemir M, Yurteri C U and Sadikoglu H, Critical Reviews in Food Science and Nutrition, 1999, 39, 457. [7] Zhang W, Chu P K, Zhang J and Jiang Z, Applied Surface Science, 2006, 252, 7884. [8] Saravanan S, Anantharaman M R, Venkatachalam S, Avasthi D K, Vacuum, 2007, 82, 56. [9] Sharma T, Aggarwal S, Kumar S, Mittal VK, Kalsi PC and Manchanda V K, Journal of Materials Science, 2007, 42, 1127. [10] Saeed A A, Ph.D. Thesis, Physics Department, College of Science, Baghdad University, Baghdad, Iraq, (2000). [11] Kim JW, Kim KJ, Park S, Jeong K U and Lee M H, Bulletin of the Korean Chemical Society , 2012, 33, 2966. [12] Chakraborty C, Malik S, Guenet J M, Macromolecular Symposia, 2011, 303, 56. [13] Zhogova K B, Davydov I A, Punin V T, Troitskii B B and Domvachiev G A European Polymer Journal, 2005, 41, 1260. [14] Mortazavi S H, Ghoranneviss M and Faryadras S, Journal of Fusion Energy, 2011. [15] De Geyter N, Morent R, Leys C, Gengember L and Payen E, Surface & Coatings Technology, 2007, 201,7066,7075. [16] Kitova S, Minchev M, and Danev G, Journal of Optoelectronics and Advanced materials, 2005, 7, 249,252. [17] Jaleha B, Shayegani Madad M, Farshchi Tabrizi M, Habibi S, Golbedaghi R and Keymanesh MR, Journal of the Iranian Chemical Society ,2011, Soc 8,S161,S168. [18] Kumar A, Podhorodecki A, Misiewicz J, Avasthi D K and Pivin J C, Journal of Applied Physics, 2009, 105,024314. [19] Tauc J, Amorphous and Liquid Semiconductors, Plenum Press, New York, 1979, pp159 [20] Mott N and Davis E, Electronic Process in Non-Crystalline Materials, 2nd Edition, University Press, Oxford, 1979. [21] Adamopoulos G, Heiser T, Giovanella U, Ould-Saad S, vande Wetering KI, Brochon C, Zorba T, Paraskevopoulos KM and Hadziioannou G, Thin Solid Films, 2006, 511 , 371. [22] Ahmed R M and El-Bashir S M, International Journal of Photoenergy, 2011, 801409 ,1. [23] Dorranian D, Abedini Z, Hojabri A, Ghoranneviss M, Journal of Non-Oxide Glasses, 2009, 1,217 , 229. [24] Dragoman D and Dragoman M, Optical characterization of solids. 1st ed, Springer, Berlin, 2002. [25] Hasan B A, Journal of Education College, 2005, 5 (3), 449. [26] Seraphin B O, Optical Properties of Solid New Developments, Company, American Elsevier Publishing, New York, 1976. [27] Ghanipour M and Dorranian D, Journal of Nanomaterials, 2013,1,10.