SlideShare a Scribd company logo
1 of 12
Download to read offline
Analog & Digital Electronics
Course No: PH-218
Lecture 1: Semiconductor Materials
Course Instructors:
 Dr. A. P. VAJPEYI
Department of Physics,
Indian Institute of Technology Guwahati, India 1
Semiconductors are those materials whose conductivity lies in between the conductivity of
conductors and insulators.
 At 0K, semiconductors behave like a insulators.
 At room temperature the resistivity of semiconducting materials lies in the range of 10-3 to
10-8 ohm cm.
 The three most important semiconductors used in the construction of electronic devices are
Si, Ge and GaAs.
Important properties of semiconductors (at RT)
Semiconductors
2
Si Ge GaAs
Electrons mobility ((m2
/ V / s))
0.14 0.39 0.85
Holes mobility (m2 / V /
s)
0.05 0.19 0.04
Bandgap (eV) 1.1 0.67 1.43
Intrinsic carrier (/cm3) 1.5×1010 2.5×1013 1.7×106
Conductors, Insulators and Semiconductors
3
 In conductors valence band (VB) and conduction band (CB) overlap hence no bandgap.
 In insulators there is large bandgap (typically 5 to 10eV) between VB and CB. In insulators
VB is completely filled and CB is completely empty.
 In semiconductors bandgap between VB and CB is low.
The resistivity of semiconductors generally decrease with increasing temperature (resistivity
of Si is -.07/oC and that of Ge is -0.05/oC) in contrast with that of metals which generally
increases. (Why?)
Valence band
Conduction band
Hole
When an electron in the valence band of a
semiconductor makes a transition to the
conduction band, it leaves behind a vacant
state known as a ‘hole’.
When a potential difference is applied
across the semiconductor sample, the
electrons in the conduction band result in a
current flow.
Semiconductors
4
 However the electrons in the valence band also contribute to the current by
filling the empty states (or holes) left behind by electrons that have made
transitions to the conduction band.
 Both electrons and holes contribute to conduction, and the resistivity
decreases.
III
A
IVA V A VIA
Compound SC
Semiconductors (SC)
Elemental SC
III-V II-VI IV-VI IV-IV
5
 Compound SC may be binary, ternary or quatarnary SCs.
 III-V SCs - GaN (3.4eV), InN (0.7eV), AlN (6.2eV) , GaP, GaAs, InP, InAs, InSb
 II-VI SCs – ZnS(3.68eV), ZnSe, ZnTe, CdS(2.42eV) , CdSe, and CdTe
 IV –VI - PbS(0.41eV), PbSe (0.27eV), and PbTe (0.31eV) – Useful for infrared
detectors and radiation sources
III-V II-VI IV-VI IV-IV
6
7
Taken from SMA-5111 – Prof. Fonstad
The diamond cubic structure consists of two interpenetrating face-centered
cubic lattices, with one offset 1/4 of a cube along the cube diagonal.
Each of the atoms (e.g., C) is four coordinate, and the shortest interatomic
distance (C-C) may be determined from the unit cell parameter (a).
C-C = a(3)0.5 / 4 = 0.422a
Crystal Structure of Si (IV elements)
8
C, Si, Ge, Sn, ...
Diamond Zinc Blende
GaAs, InP,..etc...
Intrinsic semiconductors
Intrinsic Si
 In pure state semiconductor is called intrinsic
semiconductor.
 At room temperature a few electrons have
sufficient energy to overcome the bandgap and
contribute to the current.
 also valid for extrinsic SC
2
. i
n
p
n =
Extrinsic semiconductors (doped intrinsic semiconductor)
 The incorporation of impurity elements (dopants) in an intrinsic semiconductor by a
controlled way is called doping.
 The objective of doping is to increases the conductivity of a semiconductor.
 The main dopants are from column V ( for n-type semiconductor) and Column III
elements (for p-type semiconductor).
9
n-type Si
• Silicon samples doped with a pentavalent atom
such as arsenic is known as an n-type
semiconductor because conduction is due to
negative charges (electrons).
• Since each pentavalent atom essentially
‘donates’ an electron to the lattice, it is called
a donor atom.
Extrinsic semiconductors (doped intrinsic semiconductor)
n-type semiconductor
p-type semiconductor
p-type Si
• Silicon samples doped with trivalent
atoms such as gallium are known as p-
type semiconductors because
conduction is due to positive holes.
 Note that both n-type and p-type
semiconductors are electrically neutral.
p-type semiconductor
10
n and p-type Semiconductors
 In n-type semiconductors the ‘impurity’ energy level lies very close to the conduction band. Electrons
are readily promoted to the conduction band from the ‘impurity‘ level which is, therefore, known as
the donor level. Majority carriers concentration n = Nd and minority carriers
 In p-type semiconductors the ‘impurity’ level lies just above the valence band. Electrons are readily
accepted from the valence band leaving holes behind. The ‘impurity’ levels are therefore known as
acceptor levels. Majority carriers concentration p = Na and minority carriers
11
n
n
p i
2
=
p
n
n i
2
=
Main dopants and their ionization energies
Ionization energies for dopants in Si  Ge (eV)
Type Element Si Ge
n-type
P 0.044 0.012
As 0.049 0.013
Sb 0.039 0.010
Sb 0.039 0.010
p-type
B 0.045 0.010
Al 0.057 0.010
Ga 0.065 0.011
In 0.16 0.011
12

More Related Content

Similar to Lec-1.pdf

B.Tech sem I Engineering Physics U-II Chapter 1-Band theory of solid
B.Tech sem I Engineering Physics U-II Chapter 1-Band theory of solidB.Tech sem I Engineering Physics U-II Chapter 1-Band theory of solid
B.Tech sem I Engineering Physics U-II Chapter 1-Band theory of solid
Abhi Hirpara
 
B.tech sem i engineering physics u ii chapter 1-band theory of solid
B.tech sem i engineering physics u ii chapter 1-band theory of solidB.tech sem i engineering physics u ii chapter 1-band theory of solid
B.tech sem i engineering physics u ii chapter 1-band theory of solid
Rai University
 
Semiconductor.pdf description ki last lin...
Semiconductor.pdf                                     description ki last lin...Semiconductor.pdf                                     description ki last lin...
Semiconductor.pdf description ki last lin...
KALPESH-JNV
 
1.Introduction to Electronics.pptx
1.Introduction to Electronics.pptx1.Introduction to Electronics.pptx
1.Introduction to Electronics.pptx
kpdemon
 

Similar to Lec-1.pdf (20)

B.Tech sem I Engineering Physics U-II Chapter 1-Band theory of solid
B.Tech sem I Engineering Physics U-II Chapter 1-Band theory of solidB.Tech sem I Engineering Physics U-II Chapter 1-Band theory of solid
B.Tech sem I Engineering Physics U-II Chapter 1-Band theory of solid
 
Semiconductor fundamentals.pptx
Semiconductor fundamentals.pptxSemiconductor fundamentals.pptx
Semiconductor fundamentals.pptx
 
An introduction to Semiconductor and its types.pptx
An introduction to Semiconductor and its types.pptxAn introduction to Semiconductor and its types.pptx
An introduction to Semiconductor and its types.pptx
 
Ch02Semiconductorpptx__2022_10_03_21_55_50.pptx
Ch02Semiconductorpptx__2022_10_03_21_55_50.pptxCh02Semiconductorpptx__2022_10_03_21_55_50.pptx
Ch02Semiconductorpptx__2022_10_03_21_55_50.pptx
 
B.tech sem i engineering physics u ii chapter 1-band theory of solid
B.tech sem i engineering physics u ii chapter 1-band theory of solidB.tech sem i engineering physics u ii chapter 1-band theory of solid
B.tech sem i engineering physics u ii chapter 1-band theory of solid
 
MODULE 1 modified - CET (1).pptx
MODULE 1 modified - CET (1).pptxMODULE 1 modified - CET (1).pptx
MODULE 1 modified - CET (1).pptx
 
Semiconductor.pdf description ki last lin...
Semiconductor.pdf                                     description ki last lin...Semiconductor.pdf                                     description ki last lin...
Semiconductor.pdf description ki last lin...
 
Chapter 07.ppt Electrical conduction
Chapter 07.ppt     Electrical conductionChapter 07.ppt     Electrical conduction
Chapter 07.ppt Electrical conduction
 
Semiconductors
SemiconductorsSemiconductors
Semiconductors
 
Semiconductor devices
Semiconductor devicesSemiconductor devices
Semiconductor devices
 
Presentation report for Intrinsic & Extrinsic , N-type & P-type and Forward& ...
Presentation report for Intrinsic & Extrinsic , N-type & P-type and Forward& ...Presentation report for Intrinsic & Extrinsic , N-type & P-type and Forward& ...
Presentation report for Intrinsic & Extrinsic , N-type & P-type and Forward& ...
 
Semiconcuctor devices introduction
Semiconcuctor devices  introductionSemiconcuctor devices  introduction
Semiconcuctor devices introduction
 
Topic 2.1- Semiconductors.pptx
Topic 2.1- Semiconductors.pptxTopic 2.1- Semiconductors.pptx
Topic 2.1- Semiconductors.pptx
 
Lecture 16
Lecture 16Lecture 16
Lecture 16
 
Basic Electronics UNIt1 PPT
Basic Electronics UNIt1 PPTBasic Electronics UNIt1 PPT
Basic Electronics UNIt1 PPT
 
Semiconductor Devices.pptx
Semiconductor Devices.pptxSemiconductor Devices.pptx
Semiconductor Devices.pptx
 
Semiconductor physics
Semiconductor physicsSemiconductor physics
Semiconductor physics
 
1.Introduction to Electronics.pptx
1.Introduction to Electronics.pptx1.Introduction to Electronics.pptx
1.Introduction to Electronics.pptx
 
Semiconductors
SemiconductorsSemiconductors
Semiconductors
 
Edc
EdcEdc
Edc
 

More from Gollapalli Sreenivasulu

Fundamentals Of Computer Organization And Architecture.pdf
Fundamentals Of Computer Organization And Architecture.pdfFundamentals Of Computer Organization And Architecture.pdf
Fundamentals Of Computer Organization And Architecture.pdf
Gollapalli Sreenivasulu
 
Kluwer.Academic.Publishers.HVDC.and.FACTS.Controllers.Applications.of.Static....
Kluwer.Academic.Publishers.HVDC.and.FACTS.Controllers.Applications.of.Static....Kluwer.Academic.Publishers.HVDC.and.FACTS.Controllers.Applications.of.Static....
Kluwer.Academic.Publishers.HVDC.and.FACTS.Controllers.Applications.of.Static....
Gollapalli Sreenivasulu
 
Electrical Power Systems Design and Analysis - The Transmission Subsystem - M...
Electrical Power Systems Design and Analysis - The Transmission Subsystem - M...Electrical Power Systems Design and Analysis - The Transmission Subsystem - M...
Electrical Power Systems Design and Analysis - The Transmission Subsystem - M...
Gollapalli Sreenivasulu
 
InTech-Integration_of_hybrid_distributed_generation_units_in_power_grid.pdf
InTech-Integration_of_hybrid_distributed_generation_units_in_power_grid.pdfInTech-Integration_of_hybrid_distributed_generation_units_in_power_grid.pdf
InTech-Integration_of_hybrid_distributed_generation_units_in_power_grid.pdf
Gollapalli Sreenivasulu
 
Electrical Engineering - Power System Analysis Short-Circuit Load Flow and Ha...
Electrical Engineering - Power System Analysis Short-Circuit Load Flow and Ha...Electrical Engineering - Power System Analysis Short-Circuit Load Flow and Ha...
Electrical Engineering - Power System Analysis Short-Circuit Load Flow and Ha...
Gollapalli Sreenivasulu
 
Electric Power Systems - Analysis and Control - F. Saccomanno (Wiley-IEEE, 20...
Electric Power Systems - Analysis and Control - F. Saccomanno (Wiley-IEEE, 20...Electric Power Systems - Analysis and Control - F. Saccomanno (Wiley-IEEE, 20...
Electric Power Systems - Analysis and Control - F. Saccomanno (Wiley-IEEE, 20...
Gollapalli Sreenivasulu
 
Mohan N.(2003) Power Electronics and Drives(257s) buono.pdf
Mohan N.(2003) Power Electronics and Drives(257s) buono.pdfMohan N.(2003) Power Electronics and Drives(257s) buono.pdf
Mohan N.(2003) Power Electronics and Drives(257s) buono.pdf
Gollapalli Sreenivasulu
 
Power Electronics Handbook Second Edition Devices Circuits and Applications.pdf
Power Electronics Handbook Second Edition Devices Circuits and Applications.pdfPower Electronics Handbook Second Edition Devices Circuits and Applications.pdf
Power Electronics Handbook Second Edition Devices Circuits and Applications.pdf
Gollapalli Sreenivasulu
 

More from Gollapalli Sreenivasulu (20)

Fundamentals Of Computer Organization And Architecture.pdf
Fundamentals Of Computer Organization And Architecture.pdfFundamentals Of Computer Organization And Architecture.pdf
Fundamentals Of Computer Organization And Architecture.pdf
 
(eBook - CRC Press) - Electrical Energy Systems (2000).pdf
(eBook - CRC Press) - Electrical Energy Systems (2000).pdf(eBook - CRC Press) - Electrical Energy Systems (2000).pdf
(eBook - CRC Press) - Electrical Energy Systems (2000).pdf
 
Kluwer.Academic.Publishers.HVDC.and.FACTS.Controllers.Applications.of.Static....
Kluwer.Academic.Publishers.HVDC.and.FACTS.Controllers.Applications.of.Static....Kluwer.Academic.Publishers.HVDC.and.FACTS.Controllers.Applications.of.Static....
Kluwer.Academic.Publishers.HVDC.and.FACTS.Controllers.Applications.of.Static....
 
Crc - Electrical Power Systems.pdf
Crc - Electrical Power Systems.pdfCrc - Electrical Power Systems.pdf
Crc - Electrical Power Systems.pdf
 
Electrical Power Systems Design and Analysis - The Transmission Subsystem - M...
Electrical Power Systems Design and Analysis - The Transmission Subsystem - M...Electrical Power Systems Design and Analysis - The Transmission Subsystem - M...
Electrical Power Systems Design and Analysis - The Transmission Subsystem - M...
 
electrical-power.pdf
electrical-power.pdfelectrical-power.pdf
electrical-power.pdf
 
reference book.pdf
reference book.pdfreference book.pdf
reference book.pdf
 
transmission and distribution.pdf
transmission and distribution.pdftransmission and distribution.pdf
transmission and distribution.pdf
 
sectors of electricity use.pdf
sectors of electricity use.pdfsectors of electricity use.pdf
sectors of electricity use.pdf
 
InTech-Integration_of_hybrid_distributed_generation_units_in_power_grid.pdf
InTech-Integration_of_hybrid_distributed_generation_units_in_power_grid.pdfInTech-Integration_of_hybrid_distributed_generation_units_in_power_grid.pdf
InTech-Integration_of_hybrid_distributed_generation_units_in_power_grid.pdf
 
High_Voltage_Engineering_2E.pdf
High_Voltage_Engineering_2E.pdfHigh_Voltage_Engineering_2E.pdf
High_Voltage_Engineering_2E.pdf
 
power systems.pdf
power systems.pdfpower systems.pdf
power systems.pdf
 
Electrical Engineering - Power System Analysis Short-Circuit Load Flow and Ha...
Electrical Engineering - Power System Analysis Short-Circuit Load Flow and Ha...Electrical Engineering - Power System Analysis Short-Circuit Load Flow and Ha...
Electrical Engineering - Power System Analysis Short-Circuit Load Flow and Ha...
 
Electric Power Systems(Schaum).pdf
Electric Power Systems(Schaum).pdfElectric Power Systems(Schaum).pdf
Electric Power Systems(Schaum).pdf
 
Grigsby, L. - Power Systems (CRC Press, 2007).pdf
Grigsby, L. - Power Systems (CRC Press, 2007).pdfGrigsby, L. - Power Systems (CRC Press, 2007).pdf
Grigsby, L. - Power Systems (CRC Press, 2007).pdf
 
Guide_to_Electric_Power_Generation.pdf
Guide_to_Electric_Power_Generation.pdfGuide_to_Electric_Power_Generation.pdf
Guide_to_Electric_Power_Generation.pdf
 
Electric Power Systems - Analysis and Control - F. Saccomanno (Wiley-IEEE, 20...
Electric Power Systems - Analysis and Control - F. Saccomanno (Wiley-IEEE, 20...Electric Power Systems - Analysis and Control - F. Saccomanno (Wiley-IEEE, 20...
Electric Power Systems - Analysis and Control - F. Saccomanno (Wiley-IEEE, 20...
 
control.pdf
control.pdfcontrol.pdf
control.pdf
 
Mohan N.(2003) Power Electronics and Drives(257s) buono.pdf
Mohan N.(2003) Power Electronics and Drives(257s) buono.pdfMohan N.(2003) Power Electronics and Drives(257s) buono.pdf
Mohan N.(2003) Power Electronics and Drives(257s) buono.pdf
 
Power Electronics Handbook Second Edition Devices Circuits and Applications.pdf
Power Electronics Handbook Second Edition Devices Circuits and Applications.pdfPower Electronics Handbook Second Edition Devices Circuits and Applications.pdf
Power Electronics Handbook Second Edition Devices Circuits and Applications.pdf
 

Recently uploaded

Artificial intelligence presentation2-171219131633.pdf
Artificial intelligence presentation2-171219131633.pdfArtificial intelligence presentation2-171219131633.pdf
Artificial intelligence presentation2-171219131633.pdf
Kira Dess
 
Tembisa Central Terminating Pills +27838792658 PHOMOLONG Top Abortion Pills F...
Tembisa Central Terminating Pills +27838792658 PHOMOLONG Top Abortion Pills F...Tembisa Central Terminating Pills +27838792658 PHOMOLONG Top Abortion Pills F...
Tembisa Central Terminating Pills +27838792658 PHOMOLONG Top Abortion Pills F...
drjose256
 
21P35A0312 Internship eccccccReport.docx
21P35A0312 Internship eccccccReport.docx21P35A0312 Internship eccccccReport.docx
21P35A0312 Internship eccccccReport.docx
rahulmanepalli02
 
Final DBMS Manual (2).pdf final lab manual
Final DBMS Manual (2).pdf final lab manualFinal DBMS Manual (2).pdf final lab manual
Final DBMS Manual (2).pdf final lab manual
BalamuruganV28
 
electrical installation and maintenance.
electrical installation and maintenance.electrical installation and maintenance.
electrical installation and maintenance.
benjamincojr
 

Recently uploaded (20)

Artificial intelligence presentation2-171219131633.pdf
Artificial intelligence presentation2-171219131633.pdfArtificial intelligence presentation2-171219131633.pdf
Artificial intelligence presentation2-171219131633.pdf
 
Tembisa Central Terminating Pills +27838792658 PHOMOLONG Top Abortion Pills F...
Tembisa Central Terminating Pills +27838792658 PHOMOLONG Top Abortion Pills F...Tembisa Central Terminating Pills +27838792658 PHOMOLONG Top Abortion Pills F...
Tembisa Central Terminating Pills +27838792658 PHOMOLONG Top Abortion Pills F...
 
Dynamo Scripts for Task IDs and Space Naming.pptx
Dynamo Scripts for Task IDs and Space Naming.pptxDynamo Scripts for Task IDs and Space Naming.pptx
Dynamo Scripts for Task IDs and Space Naming.pptx
 
Autodesk Construction Cloud (Autodesk Build).pptx
Autodesk Construction Cloud (Autodesk Build).pptxAutodesk Construction Cloud (Autodesk Build).pptx
Autodesk Construction Cloud (Autodesk Build).pptx
 
Seismic Hazard Assessment Software in Python by Prof. Dr. Costas Sachpazis
Seismic Hazard Assessment Software in Python by Prof. Dr. Costas SachpazisSeismic Hazard Assessment Software in Python by Prof. Dr. Costas Sachpazis
Seismic Hazard Assessment Software in Python by Prof. Dr. Costas Sachpazis
 
Adsorption (mass transfer operations 2) ppt
Adsorption (mass transfer operations 2) pptAdsorption (mass transfer operations 2) ppt
Adsorption (mass transfer operations 2) ppt
 
Basics of Relay for Engineering Students
Basics of Relay for Engineering StudentsBasics of Relay for Engineering Students
Basics of Relay for Engineering Students
 
engineering chemistry power point presentation
engineering chemistry  power point presentationengineering chemistry  power point presentation
engineering chemistry power point presentation
 
21P35A0312 Internship eccccccReport.docx
21P35A0312 Internship eccccccReport.docx21P35A0312 Internship eccccccReport.docx
21P35A0312 Internship eccccccReport.docx
 
Intro to Design (for Engineers) at Sydney Uni
Intro to Design (for Engineers) at Sydney UniIntro to Design (for Engineers) at Sydney Uni
Intro to Design (for Engineers) at Sydney Uni
 
Raashid final report on Embedded Systems
Raashid final report on Embedded SystemsRaashid final report on Embedded Systems
Raashid final report on Embedded Systems
 
Working Principle of Echo Sounder and Doppler Effect.pdf
Working Principle of Echo Sounder and Doppler Effect.pdfWorking Principle of Echo Sounder and Doppler Effect.pdf
Working Principle of Echo Sounder and Doppler Effect.pdf
 
Artificial Intelligence in due diligence
Artificial Intelligence in due diligenceArtificial Intelligence in due diligence
Artificial Intelligence in due diligence
 
analog-vs-digital-communication (concept of analog and digital).pptx
analog-vs-digital-communication (concept of analog and digital).pptxanalog-vs-digital-communication (concept of analog and digital).pptx
analog-vs-digital-communication (concept of analog and digital).pptx
 
15-Minute City: A Completely New Horizon
15-Minute City: A Completely New Horizon15-Minute City: A Completely New Horizon
15-Minute City: A Completely New Horizon
 
Final DBMS Manual (2).pdf final lab manual
Final DBMS Manual (2).pdf final lab manualFinal DBMS Manual (2).pdf final lab manual
Final DBMS Manual (2).pdf final lab manual
 
electrical installation and maintenance.
electrical installation and maintenance.electrical installation and maintenance.
electrical installation and maintenance.
 
Research Methodolgy & Intellectual Property Rights Series 1
Research Methodolgy & Intellectual Property Rights Series 1Research Methodolgy & Intellectual Property Rights Series 1
Research Methodolgy & Intellectual Property Rights Series 1
 
litvinenko_Henry_Intrusion_Hong-Kong_2024.pdf
litvinenko_Henry_Intrusion_Hong-Kong_2024.pdflitvinenko_Henry_Intrusion_Hong-Kong_2024.pdf
litvinenko_Henry_Intrusion_Hong-Kong_2024.pdf
 
NO1 Best Powerful Vashikaran Specialist Baba Vashikaran Specialist For Love V...
NO1 Best Powerful Vashikaran Specialist Baba Vashikaran Specialist For Love V...NO1 Best Powerful Vashikaran Specialist Baba Vashikaran Specialist For Love V...
NO1 Best Powerful Vashikaran Specialist Baba Vashikaran Specialist For Love V...
 

Lec-1.pdf

  • 1. Analog & Digital Electronics Course No: PH-218 Lecture 1: Semiconductor Materials Course Instructors: Dr. A. P. VAJPEYI Department of Physics, Indian Institute of Technology Guwahati, India 1
  • 2. Semiconductors are those materials whose conductivity lies in between the conductivity of conductors and insulators. At 0K, semiconductors behave like a insulators. At room temperature the resistivity of semiconducting materials lies in the range of 10-3 to 10-8 ohm cm. The three most important semiconductors used in the construction of electronic devices are Si, Ge and GaAs. Important properties of semiconductors (at RT) Semiconductors 2 Si Ge GaAs Electrons mobility ((m2 / V / s)) 0.14 0.39 0.85 Holes mobility (m2 / V / s) 0.05 0.19 0.04 Bandgap (eV) 1.1 0.67 1.43 Intrinsic carrier (/cm3) 1.5×1010 2.5×1013 1.7×106
  • 3. Conductors, Insulators and Semiconductors 3 In conductors valence band (VB) and conduction band (CB) overlap hence no bandgap. In insulators there is large bandgap (typically 5 to 10eV) between VB and CB. In insulators VB is completely filled and CB is completely empty. In semiconductors bandgap between VB and CB is low. The resistivity of semiconductors generally decrease with increasing temperature (resistivity of Si is -.07/oC and that of Ge is -0.05/oC) in contrast with that of metals which generally increases. (Why?)
  • 4. Valence band Conduction band Hole When an electron in the valence band of a semiconductor makes a transition to the conduction band, it leaves behind a vacant state known as a ‘hole’. When a potential difference is applied across the semiconductor sample, the electrons in the conduction band result in a current flow. Semiconductors 4 However the electrons in the valence band also contribute to the current by filling the empty states (or holes) left behind by electrons that have made transitions to the conduction band. Both electrons and holes contribute to conduction, and the resistivity decreases.
  • 5. III A IVA V A VIA Compound SC Semiconductors (SC) Elemental SC III-V II-VI IV-VI IV-IV 5 Compound SC may be binary, ternary or quatarnary SCs. III-V SCs - GaN (3.4eV), InN (0.7eV), AlN (6.2eV) , GaP, GaAs, InP, InAs, InSb II-VI SCs – ZnS(3.68eV), ZnSe, ZnTe, CdS(2.42eV) , CdSe, and CdTe IV –VI - PbS(0.41eV), PbSe (0.27eV), and PbTe (0.31eV) – Useful for infrared detectors and radiation sources III-V II-VI IV-VI IV-IV
  • 6. 6
  • 7. 7 Taken from SMA-5111 – Prof. Fonstad
  • 8. The diamond cubic structure consists of two interpenetrating face-centered cubic lattices, with one offset 1/4 of a cube along the cube diagonal. Each of the atoms (e.g., C) is four coordinate, and the shortest interatomic distance (C-C) may be determined from the unit cell parameter (a). C-C = a(3)0.5 / 4 = 0.422a Crystal Structure of Si (IV elements) 8 C, Si, Ge, Sn, ... Diamond Zinc Blende GaAs, InP,..etc...
  • 9. Intrinsic semiconductors Intrinsic Si In pure state semiconductor is called intrinsic semiconductor. At room temperature a few electrons have sufficient energy to overcome the bandgap and contribute to the current. also valid for extrinsic SC 2 . i n p n = Extrinsic semiconductors (doped intrinsic semiconductor) The incorporation of impurity elements (dopants) in an intrinsic semiconductor by a controlled way is called doping. The objective of doping is to increases the conductivity of a semiconductor. The main dopants are from column V ( for n-type semiconductor) and Column III elements (for p-type semiconductor). 9
  • 10. n-type Si • Silicon samples doped with a pentavalent atom such as arsenic is known as an n-type semiconductor because conduction is due to negative charges (electrons). • Since each pentavalent atom essentially ‘donates’ an electron to the lattice, it is called a donor atom. Extrinsic semiconductors (doped intrinsic semiconductor) n-type semiconductor p-type semiconductor p-type Si • Silicon samples doped with trivalent atoms such as gallium are known as p- type semiconductors because conduction is due to positive holes. Note that both n-type and p-type semiconductors are electrically neutral. p-type semiconductor 10
  • 11. n and p-type Semiconductors In n-type semiconductors the ‘impurity’ energy level lies very close to the conduction band. Electrons are readily promoted to the conduction band from the ‘impurity‘ level which is, therefore, known as the donor level. Majority carriers concentration n = Nd and minority carriers In p-type semiconductors the ‘impurity’ level lies just above the valence band. Electrons are readily accepted from the valence band leaving holes behind. The ‘impurity’ levels are therefore known as acceptor levels. Majority carriers concentration p = Na and minority carriers 11 n n p i 2 = p n n i 2 =
  • 12. Main dopants and their ionization energies Ionization energies for dopants in Si Ge (eV) Type Element Si Ge n-type P 0.044 0.012 As 0.049 0.013 Sb 0.039 0.010 Sb 0.039 0.010 p-type B 0.045 0.010 Al 0.057 0.010 Ga 0.065 0.011 In 0.16 0.011 12