SlideShare a Scribd company logo
1 of 39
Download to read offline
1 
ZnO based transparent electronics 
Jidong Jin Research Associate, Dept. of EEE
2 
Outline 
1.Transparent electronic devices 
•ZnO based TFTs 
•ZnO based Schottky diode 
•ZnO based MESFETs 
•ZnO based planar nano-devices 2. New applications 
•Display technology 
•Transparent integrated circuit
3 
Speed is relative 
material cost 
speed 
Plastic electronics 
Amorphous silicon Metal oxides 
Single crystal silicon 
III-V semiconductors e.g., GaAs 
Material and applications dictate what is “fast” and what is “slow”
4 
Why ZnO Thin Films ? 
•Intensively studied only since 2003 
•Still needs a lot of research and development 
•Wide band gap (3.4 eV) - visual transparent. 
•High electron mobility - high performance. 
•Low cost, easily fabricated at room temperature. 
•Large area and flexibility. Zinc oxide applications? 
•Transparent electrodes 
•Light-emitting diode 
•Driving circuitry for OLED display 
•Solar cells 
•Flexible electronics
5 
Part 1 
ZnO-Based TFTs
6 
Main landmarks achieved with TFTs
7 
Oxide TFTs related papers 
In the legend S means “solution processed”
8 
ZnO TFT Applications 
ZnO TFT based OLED panel 
A Ring oscillator on a glass substrate University of Manchester 
Fully Transparent TFT 
An inverter on a flexible substrate University of Manchester
9 
•Conventional TFTs are fabricated on Si substrate using metal contacts and undoped ZnO active layers. 
•Transparent TFTs are fabricated on glass substrates using doped ZnO contacts and undoped ZnO active layers.
10 
Metal Oxide based TFTs for OLED technology 
Display technology 
•Liquid crystal display (LCD) 
•Organic light emitting diode (OLED) Why OLED ? 
•Self emitting – Does not require back lighting 
•Fast response – Fast video applications 
•Very thin – Thin and light weight display 
•Flexible substrate – Flexible display 
Metal oxide thin films for OLED technology 
•IGZO – It is amorphous and suitable for flexible substrate mobility: 10 – 20 cm2/Vs 
•ZnO – It is usually polycrystalline and suitable high speed application mobility: over 30 cm2/Vs is possible
11 
Pixel circuit 
OLED 
LCD 
•LCD – normally off state is important for TFTs 
•OLED –on and off states are both important for TFTs
12 
Required carrier mobility for future displays 
~1 cm2/Vs 
~5 cm2/Vs 
~40 cm2/Vs
13 
SEL introduces 3-fold 8.7-inch AMOLED display 
At the Display Innovation 2014 trade show in Yokohoma City, Japan, Semiconductor Energy Laboratory (SEL) introduced an 8.7" Super AMOLED display, which can fold in three. It sports 1920 x 1080 pixel resolution resulting in a pixel density of 254 ppi.
14 
Sputtered ZnO Thin Film Transistors with Carrier Mobility over 50 cm2/Vs* 
ZnO TFT structure 
• Saturation mobility ~103 cm2/Vs 
• VT =1.3 V 
• On/off ratio: 4.1×105 
• S=0.29 V/decade 
• RF sputtering was used to deposit both ZnO and Ta2O5 gate insulator 
To our knowledge, the obtained mobility is one of the highest values in sputtered ZnO TFTs 
ZnO TFT characteristics
15 
Tuning the Electrical Properties of ZnO Thin- Film Transistors* 
• Very high conductivity in as-deposited films, typical σSD ~ 11300 S/m. 
• Little field effect observed in as-deposited films. 
• Good transistor behaviour observed when annealing at 220 oC in air. 
• The experiments show that annealing in air increases the threshold voltage of the TFTs, while annealing in nitrogen gas reduces it.
16 
Tuning the Electrical Properties of ZnO Thin- Film Transistors
17
18 
Part 2 
ZnO-Based MESFETs & Schottky diode
19 
ZnO based MESFET 
ZnO TFT 
ZnO MESFET 
•In 1966 Carver Mead made first MESFET [1] 
•MESFET exhibits much lower operating voltage than TFT 
•A higher channel mobility than TFT [2] [1] C. Mead, Proceedings of the institute of Electrical and Electronics Engineers, vol. 54, pp. 307-308, 1966, [2] Frenzel.et.al, Appl.Phys.Lett. Vol. 92, p19, 2008
20 
Depletion and Enhancement mode MESFET 
Threshold voltage VT is given by 
for the uniformly doped case. 
Where Vbi is Schottky barrier 
buit in potential. 
Depletion 
Enhancement
21 
Logic Circuit Design (Schottky-diode FET- Logic Inverter & NOR gate) 
10 μm 
20 μm 
1520 μm 
1490 μm 
20 μm 
SDFL inverter 
NOR gate 
Characteristics of a SDFL inverter
22 
ZnO based Schottky diode (Future work) 
Al 
Silver oxide 
• Substrate: Glass 
• ZnO: RF sputtering or ALD 
• Al: thermal evaporation 
• Silver oxide: RF sputtering via shadow mask 
(radius – 50 μm) 
ZnO   
 
 
 
 
 
 
  
 
 
  
  
 
 
  
 
  
 exp exp 1 * 2 
nk T 
q V IR 
k T 
q 
I AA T 
B 
S 
B 
B  
Parameter Symbol 
Barrier height 휙퐵 
Series resistance 푅푆 
Ideality factor 푛 
Richardson constant 퐴∗ 
Area of the diode 퐴 
Objective 
• n < 1.5 
• Frequency response: ~ 800 MHz 
Rectifier schematic
23 
Schottky contacts on ZnO 
1. Frenzel et al. Thin Solid Films, vol. 518, pp. 1119-1123, 2009. 
2. Weichsel et al. Semi. Sci. and Tech., vol. 20, pp. 840-843, 2005 
3. Aydogan et al. J. Alloys Compounds, vol. 476, pp. 913-918, 2009. 
4. Krajewski, et al. Acta Physica Polonica A, vol. 120, pp. A17-A21, 2011.
24 
Part 3 
ZnO-Based Nano-Devices
25 
SGT and SSD 
Source 
Drain 
Gate 
Gate 
Semiconductor 
Insulating trenches 
Anode 
Cathode 
Semiconductor 
Insulating trenches 
Side-Gated Transistor (SGT) 
Self-Switching Diode (SSD) 
Conventional TFTs: 
- Require multi-layer stack structures. 
- Exact alignment required. 
- Difficult to maintain alignment over large 
area on flexible substrate. 
Planar nanodevices: 
- Simpler structure than conventional TFTs. 
- single layer. 
- Nanometre-size allowing ultra-high speed. 
- Suitable for one-step nanoimprint. 
- Low printing cost. 
Conventional TFTs
26 
Self switching diode (SSD) 
Etched trenches
27 
Self switching diode (SSD)
28 
Side-gated transistor (SGT) 
drain 
source 
gate 
gate 
0.0 0.5 1.0 1.5 2.0 
0.0 
0.5 
1.0 
1.5 
2.0 
2.5 
Drain Current (A) 
Drain Voltage (V) 
2.0 V 
1.5 V 
1.0 V 
0.5 V 
0 V 
-1.0 V 
-1.5 V 
• The charge in the nanochannel is controlled by two lateral electrodes. 
• The transistor threshold depends on the geometry, NOT the material.
29 
EBL & Wet-etching
30 
One-step process (direct embossing) 
Thermal indentation (imprint) using semiconductor deposited on top of a polymer buffer layer 
SEM image of the device 
Yield is not high enough
31 
Multi-step process (Nano imprint & RIE) 
ZnO 
Substrate 
shim 
PMMA 
ZnO 
Substrate 
O2 RIE 
ZnO Substrate 
CH4+H2 RIE 
EVG 520
32 
ZnO based SGT 
• The transfer and output curve for the planar ZnO SGT fabricated by EBL and wet-etching process.
33 
ZnO based SSD 
• I-V curve for the planar ZnO thin film nano-diode fabricated by EBL and wet- etching process. 
• Separate experiments showed 50MHz high speed.
34 
ZnO based planar nanodiode operating at 50 MHz* 
Optical image 
AFM image 
Frequency response 
•A parallel array of 50 SSDs fabricated by EBL and wet-etching 
•Input – a sinusoidal voltage supply of 4V (RMS value) 
•Separate experiment – ZnO TFTs mobility 0.1 to 0.3 cm2/Vs. 
•If ZnO films with higher mobilities are used, frequency response can be up to a few GHz.
35 
ZnO based planar inverter 
Channel Length (μm) 
Channel Width (nm) 
SSD 
2 
500 
SGT 
2 
450 
• All terminals on the same layers. 
• No need of interconnect layers. 
• Circuits are fabricated by “writing” lines on the substrate.
36 
Circuits applications 
NOR 
NAND 
1 
1 
1 
0 
1 
0 
A 
B 
1 
0 
A 
B 
Out 
NAND 
1 
0 
0 
0 
1 
0 
A 
B 
1 
0 
A 
B 
Out 
NOR
37 
Novel technology for planar ultra-fast devices 
One lithography step 
No mask alignment 
nanoimprinting 
Easier interconnect layers
38 
Low parasitics = high speed 
RFID tagging 
Fast logics 
THz technology 
ZnO 
GaAs 
Novel technology for planar ultra-fast devices
39 
Thank you !

More Related Content

What's hot

Synethsis method
Synethsis methodSynethsis method
Synethsis methodabdul latif
 
Transition metal dichalcogenide NPs, recent advances in scientific research
Transition metal dichalcogenide NPs, recent advances in scientific researchTransition metal dichalcogenide NPs, recent advances in scientific research
Transition metal dichalcogenide NPs, recent advances in scientific researchANJUNITHIKURUP
 
Nonlinear Optical Materials
Nonlinear Optical MaterialsNonlinear Optical Materials
Nonlinear Optical Materialskrishslide
 
Transparent conducting oxides for thin film PV
Transparent conducting oxides for thin film PVTransparent conducting oxides for thin film PV
Transparent conducting oxides for thin film PVUniversity of Liverpool
 
Perovskite solar cells, All you need to know - Dawn John Mullassery
Perovskite solar cells, All you need to know - Dawn John MullasseryPerovskite solar cells, All you need to know - Dawn John Mullassery
Perovskite solar cells, All you need to know - Dawn John MullasseryDawn John Mullassery
 
Pulse laser deposition of thin film
Pulse laser deposition of thin filmPulse laser deposition of thin film
Pulse laser deposition of thin filmUOG PHYSICISTS !!!!!
 
Nanowires presentation
Nanowires presentationNanowires presentation
Nanowires presentationTam Van Tran
 
CdTe-CdS thin film in Solar Cell
CdTe-CdS thin film in Solar CellCdTe-CdS thin film in Solar Cell
CdTe-CdS thin film in Solar CellZahra Behboodi
 
Thin film deposition using spray pyrolysis
Thin film deposition using spray pyrolysisThin film deposition using spray pyrolysis
Thin film deposition using spray pyrolysisMUHAMMAD AADIL
 

What's hot (20)

Synethsis method
Synethsis methodSynethsis method
Synethsis method
 
Perovskite Solar Cell
Perovskite Solar CellPerovskite Solar Cell
Perovskite Solar Cell
 
Transition metal dichalcogenide NPs, recent advances in scientific research
Transition metal dichalcogenide NPs, recent advances in scientific researchTransition metal dichalcogenide NPs, recent advances in scientific research
Transition metal dichalcogenide NPs, recent advances in scientific research
 
Photonic crystals
Photonic crystalsPhotonic crystals
Photonic crystals
 
E beam lithography
E beam lithographyE beam lithography
E beam lithography
 
Nonlinear Optical Materials
Nonlinear Optical MaterialsNonlinear Optical Materials
Nonlinear Optical Materials
 
New Material:Perovskites presentation
New Material:Perovskites presentationNew Material:Perovskites presentation
New Material:Perovskites presentation
 
Nonlinear optics
Nonlinear opticsNonlinear optics
Nonlinear optics
 
Apps of thin films
Apps of thin filmsApps of thin films
Apps of thin films
 
Quantum dots ppt
Quantum dots pptQuantum dots ppt
Quantum dots ppt
 
Transparent conducting oxides for thin film PV
Transparent conducting oxides for thin film PVTransparent conducting oxides for thin film PV
Transparent conducting oxides for thin film PV
 
Perovskite solar cells, All you need to know - Dawn John Mullassery
Perovskite solar cells, All you need to know - Dawn John MullasseryPerovskite solar cells, All you need to know - Dawn John Mullassery
Perovskite solar cells, All you need to know - Dawn John Mullassery
 
Pulse laser deposition of thin film
Pulse laser deposition of thin filmPulse laser deposition of thin film
Pulse laser deposition of thin film
 
Rani
RaniRani
Rani
 
Nanowires presentation
Nanowires presentationNanowires presentation
Nanowires presentation
 
CdTe-CdS thin film in Solar Cell
CdTe-CdS thin film in Solar CellCdTe-CdS thin film in Solar Cell
CdTe-CdS thin film in Solar Cell
 
CZTS Solar Cell
CZTS Solar CellCZTS Solar Cell
CZTS Solar Cell
 
Presentation
PresentationPresentation
Presentation
 
Perovskite
PerovskitePerovskite
Perovskite
 
Thin film deposition using spray pyrolysis
Thin film deposition using spray pyrolysisThin film deposition using spray pyrolysis
Thin film deposition using spray pyrolysis
 

Similar to ZnO-Based Transparent Electronics: Transparent TFTs, MESFETs, and Nano-Devices

Flexible Electronic display ppt,VTU format
Flexible Electronic display ppt,VTU formatFlexible Electronic display ppt,VTU format
Flexible Electronic display ppt,VTU formatVinesh Gowda
 
David Mitzi at BASF Science Symposium 2015
David Mitzi at BASF Science Symposium 2015David Mitzi at BASF Science Symposium 2015
David Mitzi at BASF Science Symposium 2015BASF
 
Mosfet ppt by dhwani sametriya
Mosfet ppt by dhwani sametriyaMosfet ppt by dhwani sametriya
Mosfet ppt by dhwani sametriyaDhwani Sametriya
 
Special semiconductor devices
Special semiconductor devicesSpecial semiconductor devices
Special semiconductor devicesRAMPRAKASHT1
 
Ch7 lecture slides Chenming Hu Device for IC
Ch7 lecture slides Chenming Hu Device for ICCh7 lecture slides Chenming Hu Device for IC
Ch7 lecture slides Chenming Hu Device for ICChenming Hu
 
TFET 2024.pptx for mtech students of any
TFET 2024.pptx for mtech students of anyTFET 2024.pptx for mtech students of any
TFET 2024.pptx for mtech students of anymuktikanta4
 
Transparent electronics
Transparent electronicsTransparent electronics
Transparent electronicsAnand Saurav
 
Transparent electronics
Transparent electronicsTransparent electronics
Transparent electronicsAnand Saurav
 
Advanced mosfet architectures
Advanced mosfet architecturesAdvanced mosfet architectures
Advanced mosfet architecturesDenita Tom
 
HIGH-K DEVICES BY ALD FOR SEMICONDUCTOR APPLICATIONS
HIGH-K DEVICES BY ALD FOR SEMICONDUCTOR APPLICATIONSHIGH-K DEVICES BY ALD FOR SEMICONDUCTOR APPLICATIONS
HIGH-K DEVICES BY ALD FOR SEMICONDUCTOR APPLICATIONSJonas Sundqvist
 
Introduction To Microelectronics
Introduction To MicroelectronicsIntroduction To Microelectronics
Introduction To MicroelectronicsAnkita Jaiswal
 
PPT (TRANSPARENT ELECTRONICS)
PPT (TRANSPARENT ELECTRONICS)PPT (TRANSPARENT ELECTRONICS)
PPT (TRANSPARENT ELECTRONICS)ASHISH RANJAN
 

Similar to ZnO-Based Transparent Electronics: Transparent TFTs, MESFETs, and Nano-Devices (20)

Rosh ppt
Rosh pptRosh ppt
Rosh ppt
 
CNFET Technology
CNFET TechnologyCNFET Technology
CNFET Technology
 
Flexible Electronic display ppt,VTU format
Flexible Electronic display ppt,VTU formatFlexible Electronic display ppt,VTU format
Flexible Electronic display ppt,VTU format
 
Rm.naatchammai vlsi paper ppt
Rm.naatchammai vlsi paper pptRm.naatchammai vlsi paper ppt
Rm.naatchammai vlsi paper ppt
 
Rm.naatchammai vlsi paper ppt
Rm.naatchammai vlsi paper pptRm.naatchammai vlsi paper ppt
Rm.naatchammai vlsi paper ppt
 
David Mitzi at BASF Science Symposium 2015
David Mitzi at BASF Science Symposium 2015David Mitzi at BASF Science Symposium 2015
David Mitzi at BASF Science Symposium 2015
 
Mosfet ppt by dhwani sametriya
Mosfet ppt by dhwani sametriyaMosfet ppt by dhwani sametriya
Mosfet ppt by dhwani sametriya
 
SOTA.pptx
SOTA.pptxSOTA.pptx
SOTA.pptx
 
Special semiconductor devices
Special semiconductor devicesSpecial semiconductor devices
Special semiconductor devices
 
Ch7 lecture slides Chenming Hu Device for IC
Ch7 lecture slides Chenming Hu Device for ICCh7 lecture slides Chenming Hu Device for IC
Ch7 lecture slides Chenming Hu Device for IC
 
1549501456Lecture-1.pptx
1549501456Lecture-1.pptx1549501456Lecture-1.pptx
1549501456Lecture-1.pptx
 
TFET 2024.pptx for mtech students of any
TFET 2024.pptx for mtech students of anyTFET 2024.pptx for mtech students of any
TFET 2024.pptx for mtech students of any
 
Transparent electronics
Transparent electronicsTransparent electronics
Transparent electronics
 
Transparent electronics
Transparent electronicsTransparent electronics
Transparent electronics
 
Rapid optimisation techniques
Rapid optimisation techniquesRapid optimisation techniques
Rapid optimisation techniques
 
Advanced mosfet architectures
Advanced mosfet architecturesAdvanced mosfet architectures
Advanced mosfet architectures
 
HIGH-K DEVICES BY ALD FOR SEMICONDUCTOR APPLICATIONS
HIGH-K DEVICES BY ALD FOR SEMICONDUCTOR APPLICATIONSHIGH-K DEVICES BY ALD FOR SEMICONDUCTOR APPLICATIONS
HIGH-K DEVICES BY ALD FOR SEMICONDUCTOR APPLICATIONS
 
Introduction To Microelectronics
Introduction To MicroelectronicsIntroduction To Microelectronics
Introduction To Microelectronics
 
Ue 1(v sem)
Ue 1(v sem)Ue 1(v sem)
Ue 1(v sem)
 
PPT (TRANSPARENT ELECTRONICS)
PPT (TRANSPARENT ELECTRONICS)PPT (TRANSPARENT ELECTRONICS)
PPT (TRANSPARENT ELECTRONICS)
 

More from cdtpv

Dye-sensitized and Perovskite Solar Cells | Peter Holliman, University of Bangor
Dye-sensitized and Perovskite Solar Cells | Peter Holliman, University of BangorDye-sensitized and Perovskite Solar Cells | Peter Holliman, University of Bangor
Dye-sensitized and Perovskite Solar Cells | Peter Holliman, University of Bangorcdtpv
 
Organic Photovoltaic Devices (OPVs)
Organic Photovoltaic Devices (OPVs)Organic Photovoltaic Devices (OPVs)
Organic Photovoltaic Devices (OPVs)cdtpv
 
CdTe Solar Cells
CdTe Solar CellsCdTe Solar Cells
CdTe Solar Cellscdtpv
 
CDTPy | Python for Scientists
CDTPy | Python for ScientistsCDTPy | Python for Scientists
CDTPy | Python for Scientistscdtpv
 
Vacuum Science and Technology for Thin Film Device Processing
Vacuum Science and Technology for Thin Film Device ProcessingVacuum Science and Technology for Thin Film Device Processing
Vacuum Science and Technology for Thin Film Device Processingcdtpv
 
Vibrational Spectrroscopy
Vibrational SpectrroscopyVibrational Spectrroscopy
Vibrational Spectrroscopycdtpv
 
Optical Spectroscopy
Optical SpectroscopyOptical Spectroscopy
Optical Spectroscopycdtpv
 
PVSAT 12
PVSAT 12PVSAT 12
PVSAT 12cdtpv
 
Silicon CPV Plc
Silicon CPV PlcSilicon CPV Plc
Silicon CPV Plccdtpv
 
Industrial Perspectives on Large-Area TCOs
Industrial Perspectives on Large-Area TCOsIndustrial Perspectives on Large-Area TCOs
Industrial Perspectives on Large-Area TCOscdtpv
 
British Photovoltaic Association
British Photovoltaic AssociationBritish Photovoltaic Association
British Photovoltaic Associationcdtpv
 
Organic Photovoltaics Thin-Film Processing Considerations
Organic Photovoltaics Thin-Film Processing ConsiderationsOrganic Photovoltaics Thin-Film Processing Considerations
Organic Photovoltaics Thin-Film Processing Considerationscdtpv
 
Welcome and Introduction
Welcome and IntroductionWelcome and Introduction
Welcome and Introductioncdtpv
 
Novel Semiconductor Alloys based on GaSb for domestic PV
Novel Semiconductor Alloys based on GaSb for domestic PVNovel Semiconductor Alloys based on GaSb for domestic PV
Novel Semiconductor Alloys based on GaSb for domestic PVcdtpv
 
The Role of Molecular Structure and Conformation in Polymer Opto-Electronics
The Role of Molecular Structure and Conformation in Polymer Opto-ElectronicsThe Role of Molecular Structure and Conformation in Polymer Opto-Electronics
The Role of Molecular Structure and Conformation in Polymer Opto-Electronicscdtpv
 
From Atoms to Solar Cells
From Atoms to Solar CellsFrom Atoms to Solar Cells
From Atoms to Solar Cellscdtpv
 
Surfaces and Interfaces
Surfaces and InterfacesSurfaces and Interfaces
Surfaces and Interfacescdtpv
 
Materials Modelling: From theory to solar cells (Lecture 1)
Materials Modelling: From theory to solar cells  (Lecture 1)Materials Modelling: From theory to solar cells  (Lecture 1)
Materials Modelling: From theory to solar cells (Lecture 1)cdtpv
 
Course overview
Course overviewCourse overview
Course overviewcdtpv
 
Lectures 7-8: Charge and Energy Transfer, Photosynthesis, Biofules
Lectures 7-8: Charge and Energy Transfer, Photosynthesis, BiofulesLectures 7-8: Charge and Energy Transfer, Photosynthesis, Biofules
Lectures 7-8: Charge and Energy Transfer, Photosynthesis, Biofulescdtpv
 

More from cdtpv (20)

Dye-sensitized and Perovskite Solar Cells | Peter Holliman, University of Bangor
Dye-sensitized and Perovskite Solar Cells | Peter Holliman, University of BangorDye-sensitized and Perovskite Solar Cells | Peter Holliman, University of Bangor
Dye-sensitized and Perovskite Solar Cells | Peter Holliman, University of Bangor
 
Organic Photovoltaic Devices (OPVs)
Organic Photovoltaic Devices (OPVs)Organic Photovoltaic Devices (OPVs)
Organic Photovoltaic Devices (OPVs)
 
CdTe Solar Cells
CdTe Solar CellsCdTe Solar Cells
CdTe Solar Cells
 
CDTPy | Python for Scientists
CDTPy | Python for ScientistsCDTPy | Python for Scientists
CDTPy | Python for Scientists
 
Vacuum Science and Technology for Thin Film Device Processing
Vacuum Science and Technology for Thin Film Device ProcessingVacuum Science and Technology for Thin Film Device Processing
Vacuum Science and Technology for Thin Film Device Processing
 
Vibrational Spectrroscopy
Vibrational SpectrroscopyVibrational Spectrroscopy
Vibrational Spectrroscopy
 
Optical Spectroscopy
Optical SpectroscopyOptical Spectroscopy
Optical Spectroscopy
 
PVSAT 12
PVSAT 12PVSAT 12
PVSAT 12
 
Silicon CPV Plc
Silicon CPV PlcSilicon CPV Plc
Silicon CPV Plc
 
Industrial Perspectives on Large-Area TCOs
Industrial Perspectives on Large-Area TCOsIndustrial Perspectives on Large-Area TCOs
Industrial Perspectives on Large-Area TCOs
 
British Photovoltaic Association
British Photovoltaic AssociationBritish Photovoltaic Association
British Photovoltaic Association
 
Organic Photovoltaics Thin-Film Processing Considerations
Organic Photovoltaics Thin-Film Processing ConsiderationsOrganic Photovoltaics Thin-Film Processing Considerations
Organic Photovoltaics Thin-Film Processing Considerations
 
Welcome and Introduction
Welcome and IntroductionWelcome and Introduction
Welcome and Introduction
 
Novel Semiconductor Alloys based on GaSb for domestic PV
Novel Semiconductor Alloys based on GaSb for domestic PVNovel Semiconductor Alloys based on GaSb for domestic PV
Novel Semiconductor Alloys based on GaSb for domestic PV
 
The Role of Molecular Structure and Conformation in Polymer Opto-Electronics
The Role of Molecular Structure and Conformation in Polymer Opto-ElectronicsThe Role of Molecular Structure and Conformation in Polymer Opto-Electronics
The Role of Molecular Structure and Conformation in Polymer Opto-Electronics
 
From Atoms to Solar Cells
From Atoms to Solar CellsFrom Atoms to Solar Cells
From Atoms to Solar Cells
 
Surfaces and Interfaces
Surfaces and InterfacesSurfaces and Interfaces
Surfaces and Interfaces
 
Materials Modelling: From theory to solar cells (Lecture 1)
Materials Modelling: From theory to solar cells  (Lecture 1)Materials Modelling: From theory to solar cells  (Lecture 1)
Materials Modelling: From theory to solar cells (Lecture 1)
 
Course overview
Course overviewCourse overview
Course overview
 
Lectures 7-8: Charge and Energy Transfer, Photosynthesis, Biofules
Lectures 7-8: Charge and Energy Transfer, Photosynthesis, BiofulesLectures 7-8: Charge and Energy Transfer, Photosynthesis, Biofules
Lectures 7-8: Charge and Energy Transfer, Photosynthesis, Biofules
 

Recently uploaded

Behavioral Disorder: Schizophrenia & it's Case Study.pdf
Behavioral Disorder: Schizophrenia & it's Case Study.pdfBehavioral Disorder: Schizophrenia & it's Case Study.pdf
Behavioral Disorder: Schizophrenia & it's Case Study.pdfSELF-EXPLANATORY
 
Call Us ≽ 9953322196 ≼ Call Girls In Lajpat Nagar (Delhi) |
Call Us ≽ 9953322196 ≼ Call Girls In Lajpat Nagar (Delhi) |Call Us ≽ 9953322196 ≼ Call Girls In Lajpat Nagar (Delhi) |
Call Us ≽ 9953322196 ≼ Call Girls In Lajpat Nagar (Delhi) |aasikanpl
 
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
 
Speech, hearing, noise, intelligibility.pptx
Speech, hearing, noise, intelligibility.pptxSpeech, hearing, noise, intelligibility.pptx
Speech, hearing, noise, intelligibility.pptxpriyankatabhane
 
Solution chemistry, Moral and Normal solutions
Solution chemistry, Moral and Normal solutionsSolution chemistry, Moral and Normal solutions
Solution chemistry, Moral and Normal solutionsHajira Mahmood
 
Analytical Profile of Coleus Forskohlii | Forskolin .pptx
Analytical Profile of Coleus Forskohlii | Forskolin .pptxAnalytical Profile of Coleus Forskohlii | Forskolin .pptx
Analytical Profile of Coleus Forskohlii | Forskolin .pptxSwapnil Therkar
 
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
 
Evidences of Evolution General Biology 2
Evidences of Evolution General Biology 2Evidences of Evolution General Biology 2
Evidences of Evolution General Biology 2John Carlo Rollon
 
Call Girls in Munirka Delhi 💯Call Us 🔝9953322196🔝 💯Escort.
Call Girls in Munirka Delhi 💯Call Us 🔝9953322196🔝 💯Escort.Call Girls in Munirka Delhi 💯Call Us 🔝9953322196🔝 💯Escort.
Call Girls in Munirka Delhi 💯Call Us 🔝9953322196🔝 💯Escort.aasikanpl
 
Harmful and Useful Microorganisms Presentation
Harmful and Useful Microorganisms PresentationHarmful and Useful Microorganisms Presentation
Harmful and Useful Microorganisms Presentationtahreemzahra82
 
Manassas R - Parkside Middle School 🌎🏫
Manassas R - Parkside Middle School 🌎🏫Manassas R - Parkside Middle School 🌎🏫
Manassas R - Parkside Middle School 🌎🏫qfactory1
 
SOLUBLE PATTERN RECOGNITION RECEPTORS.pptx
SOLUBLE PATTERN RECOGNITION RECEPTORS.pptxSOLUBLE PATTERN RECOGNITION RECEPTORS.pptx
SOLUBLE PATTERN RECOGNITION RECEPTORS.pptxkessiyaTpeter
 
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
 
Artificial Intelligence In Microbiology by Dr. Prince C P
Artificial Intelligence In Microbiology by Dr. Prince C PArtificial Intelligence In Microbiology by Dr. Prince C P
Artificial Intelligence In Microbiology by Dr. Prince C PPRINCE C P
 
‏‏VIRUS - 123455555555555555555555555555555555555555
‏‏VIRUS -  123455555555555555555555555555555555555555‏‏VIRUS -  123455555555555555555555555555555555555555
‏‏VIRUS - 123455555555555555555555555555555555555555kikilily0909
 
Scheme-of-Work-Science-Stage-4 cambridge science.docx
Scheme-of-Work-Science-Stage-4 cambridge science.docxScheme-of-Work-Science-Stage-4 cambridge science.docx
Scheme-of-Work-Science-Stage-4 cambridge science.docxyaramohamed343013
 
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
 
Recombinant DNA technology( Transgenic plant and animal)
Recombinant DNA technology( Transgenic plant and animal)Recombinant DNA technology( Transgenic plant and animal)
Recombinant DNA technology( Transgenic plant and animal)DHURKADEVIBASKAR
 

Recently uploaded (20)

Behavioral Disorder: Schizophrenia & it's Case Study.pdf
Behavioral Disorder: Schizophrenia & it's Case Study.pdfBehavioral Disorder: Schizophrenia & it's Case Study.pdf
Behavioral Disorder: Schizophrenia & it's Case Study.pdf
 
Call Us ≽ 9953322196 ≼ Call Girls In Lajpat Nagar (Delhi) |
Call Us ≽ 9953322196 ≼ Call Girls In Lajpat Nagar (Delhi) |Call Us ≽ 9953322196 ≼ Call Girls In Lajpat Nagar (Delhi) |
Call Us ≽ 9953322196 ≼ Call Girls In Lajpat Nagar (Delhi) |
 
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
 
Speech, hearing, noise, intelligibility.pptx
Speech, hearing, noise, intelligibility.pptxSpeech, hearing, noise, intelligibility.pptx
Speech, hearing, noise, intelligibility.pptx
 
Solution chemistry, Moral and Normal solutions
Solution chemistry, Moral and Normal solutionsSolution chemistry, Moral and Normal solutions
Solution chemistry, Moral and Normal solutions
 
Analytical Profile of Coleus Forskohlii | Forskolin .pptx
Analytical Profile of Coleus Forskohlii | Forskolin .pptxAnalytical Profile of Coleus Forskohlii | Forskolin .pptx
Analytical Profile of Coleus Forskohlii | Forskolin .pptx
 
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
 
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
 
Evidences of Evolution General Biology 2
Evidences of Evolution General Biology 2Evidences of Evolution General Biology 2
Evidences of Evolution General Biology 2
 
Call Girls in Munirka Delhi 💯Call Us 🔝9953322196🔝 💯Escort.
Call Girls in Munirka Delhi 💯Call Us 🔝9953322196🔝 💯Escort.Call Girls in Munirka Delhi 💯Call Us 🔝9953322196🔝 💯Escort.
Call Girls in Munirka Delhi 💯Call Us 🔝9953322196🔝 💯Escort.
 
Harmful and Useful Microorganisms Presentation
Harmful and Useful Microorganisms PresentationHarmful and Useful Microorganisms Presentation
Harmful and Useful Microorganisms Presentation
 
Manassas R - Parkside Middle School 🌎🏫
Manassas R - Parkside Middle School 🌎🏫Manassas R - Parkside Middle School 🌎🏫
Manassas R - Parkside Middle School 🌎🏫
 
SOLUBLE PATTERN RECOGNITION RECEPTORS.pptx
SOLUBLE PATTERN RECOGNITION RECEPTORS.pptxSOLUBLE PATTERN RECOGNITION RECEPTORS.pptx
SOLUBLE PATTERN RECOGNITION RECEPTORS.pptx
 
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
 
Artificial Intelligence In Microbiology by Dr. Prince C P
Artificial Intelligence In Microbiology by Dr. Prince C PArtificial Intelligence In Microbiology by Dr. Prince C P
Artificial Intelligence In Microbiology by Dr. Prince C P
 
‏‏VIRUS - 123455555555555555555555555555555555555555
‏‏VIRUS -  123455555555555555555555555555555555555555‏‏VIRUS -  123455555555555555555555555555555555555555
‏‏VIRUS - 123455555555555555555555555555555555555555
 
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
 
Scheme-of-Work-Science-Stage-4 cambridge science.docx
Scheme-of-Work-Science-Stage-4 cambridge science.docxScheme-of-Work-Science-Stage-4 cambridge science.docx
Scheme-of-Work-Science-Stage-4 cambridge science.docx
 
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
 
Recombinant DNA technology( Transgenic plant and animal)
Recombinant DNA technology( Transgenic plant and animal)Recombinant DNA technology( Transgenic plant and animal)
Recombinant DNA technology( Transgenic plant and animal)
 

ZnO-Based Transparent Electronics: Transparent TFTs, MESFETs, and Nano-Devices

  • 1. 1 ZnO based transparent electronics Jidong Jin Research Associate, Dept. of EEE
  • 2. 2 Outline 1.Transparent electronic devices •ZnO based TFTs •ZnO based Schottky diode •ZnO based MESFETs •ZnO based planar nano-devices 2. New applications •Display technology •Transparent integrated circuit
  • 3. 3 Speed is relative material cost speed Plastic electronics Amorphous silicon Metal oxides Single crystal silicon III-V semiconductors e.g., GaAs Material and applications dictate what is “fast” and what is “slow”
  • 4. 4 Why ZnO Thin Films ? •Intensively studied only since 2003 •Still needs a lot of research and development •Wide band gap (3.4 eV) - visual transparent. •High electron mobility - high performance. •Low cost, easily fabricated at room temperature. •Large area and flexibility. Zinc oxide applications? •Transparent electrodes •Light-emitting diode •Driving circuitry for OLED display •Solar cells •Flexible electronics
  • 5. 5 Part 1 ZnO-Based TFTs
  • 6. 6 Main landmarks achieved with TFTs
  • 7. 7 Oxide TFTs related papers In the legend S means “solution processed”
  • 8. 8 ZnO TFT Applications ZnO TFT based OLED panel A Ring oscillator on a glass substrate University of Manchester Fully Transparent TFT An inverter on a flexible substrate University of Manchester
  • 9. 9 •Conventional TFTs are fabricated on Si substrate using metal contacts and undoped ZnO active layers. •Transparent TFTs are fabricated on glass substrates using doped ZnO contacts and undoped ZnO active layers.
  • 10. 10 Metal Oxide based TFTs for OLED technology Display technology •Liquid crystal display (LCD) •Organic light emitting diode (OLED) Why OLED ? •Self emitting – Does not require back lighting •Fast response – Fast video applications •Very thin – Thin and light weight display •Flexible substrate – Flexible display Metal oxide thin films for OLED technology •IGZO – It is amorphous and suitable for flexible substrate mobility: 10 – 20 cm2/Vs •ZnO – It is usually polycrystalline and suitable high speed application mobility: over 30 cm2/Vs is possible
  • 11. 11 Pixel circuit OLED LCD •LCD – normally off state is important for TFTs •OLED –on and off states are both important for TFTs
  • 12. 12 Required carrier mobility for future displays ~1 cm2/Vs ~5 cm2/Vs ~40 cm2/Vs
  • 13. 13 SEL introduces 3-fold 8.7-inch AMOLED display At the Display Innovation 2014 trade show in Yokohoma City, Japan, Semiconductor Energy Laboratory (SEL) introduced an 8.7" Super AMOLED display, which can fold in three. It sports 1920 x 1080 pixel resolution resulting in a pixel density of 254 ppi.
  • 14. 14 Sputtered ZnO Thin Film Transistors with Carrier Mobility over 50 cm2/Vs* ZnO TFT structure • Saturation mobility ~103 cm2/Vs • VT =1.3 V • On/off ratio: 4.1×105 • S=0.29 V/decade • RF sputtering was used to deposit both ZnO and Ta2O5 gate insulator To our knowledge, the obtained mobility is one of the highest values in sputtered ZnO TFTs ZnO TFT characteristics
  • 15. 15 Tuning the Electrical Properties of ZnO Thin- Film Transistors* • Very high conductivity in as-deposited films, typical σSD ~ 11300 S/m. • Little field effect observed in as-deposited films. • Good transistor behaviour observed when annealing at 220 oC in air. • The experiments show that annealing in air increases the threshold voltage of the TFTs, while annealing in nitrogen gas reduces it.
  • 16. 16 Tuning the Electrical Properties of ZnO Thin- Film Transistors
  • 17. 17
  • 18. 18 Part 2 ZnO-Based MESFETs & Schottky diode
  • 19. 19 ZnO based MESFET ZnO TFT ZnO MESFET •In 1966 Carver Mead made first MESFET [1] •MESFET exhibits much lower operating voltage than TFT •A higher channel mobility than TFT [2] [1] C. Mead, Proceedings of the institute of Electrical and Electronics Engineers, vol. 54, pp. 307-308, 1966, [2] Frenzel.et.al, Appl.Phys.Lett. Vol. 92, p19, 2008
  • 20. 20 Depletion and Enhancement mode MESFET Threshold voltage VT is given by for the uniformly doped case. Where Vbi is Schottky barrier buit in potential. Depletion Enhancement
  • 21. 21 Logic Circuit Design (Schottky-diode FET- Logic Inverter & NOR gate) 10 μm 20 μm 1520 μm 1490 μm 20 μm SDFL inverter NOR gate Characteristics of a SDFL inverter
  • 22. 22 ZnO based Schottky diode (Future work) Al Silver oxide • Substrate: Glass • ZnO: RF sputtering or ALD • Al: thermal evaporation • Silver oxide: RF sputtering via shadow mask (radius – 50 μm) ZnO                         exp exp 1 * 2 nk T q V IR k T q I AA T B S B B  Parameter Symbol Barrier height 휙퐵 Series resistance 푅푆 Ideality factor 푛 Richardson constant 퐴∗ Area of the diode 퐴 Objective • n < 1.5 • Frequency response: ~ 800 MHz Rectifier schematic
  • 23. 23 Schottky contacts on ZnO 1. Frenzel et al. Thin Solid Films, vol. 518, pp. 1119-1123, 2009. 2. Weichsel et al. Semi. Sci. and Tech., vol. 20, pp. 840-843, 2005 3. Aydogan et al. J. Alloys Compounds, vol. 476, pp. 913-918, 2009. 4. Krajewski, et al. Acta Physica Polonica A, vol. 120, pp. A17-A21, 2011.
  • 24. 24 Part 3 ZnO-Based Nano-Devices
  • 25. 25 SGT and SSD Source Drain Gate Gate Semiconductor Insulating trenches Anode Cathode Semiconductor Insulating trenches Side-Gated Transistor (SGT) Self-Switching Diode (SSD) Conventional TFTs: - Require multi-layer stack structures. - Exact alignment required. - Difficult to maintain alignment over large area on flexible substrate. Planar nanodevices: - Simpler structure than conventional TFTs. - single layer. - Nanometre-size allowing ultra-high speed. - Suitable for one-step nanoimprint. - Low printing cost. Conventional TFTs
  • 26. 26 Self switching diode (SSD) Etched trenches
  • 27. 27 Self switching diode (SSD)
  • 28. 28 Side-gated transistor (SGT) drain source gate gate 0.0 0.5 1.0 1.5 2.0 0.0 0.5 1.0 1.5 2.0 2.5 Drain Current (A) Drain Voltage (V) 2.0 V 1.5 V 1.0 V 0.5 V 0 V -1.0 V -1.5 V • The charge in the nanochannel is controlled by two lateral electrodes. • The transistor threshold depends on the geometry, NOT the material.
  • 29. 29 EBL & Wet-etching
  • 30. 30 One-step process (direct embossing) Thermal indentation (imprint) using semiconductor deposited on top of a polymer buffer layer SEM image of the device Yield is not high enough
  • 31. 31 Multi-step process (Nano imprint & RIE) ZnO Substrate shim PMMA ZnO Substrate O2 RIE ZnO Substrate CH4+H2 RIE EVG 520
  • 32. 32 ZnO based SGT • The transfer and output curve for the planar ZnO SGT fabricated by EBL and wet-etching process.
  • 33. 33 ZnO based SSD • I-V curve for the planar ZnO thin film nano-diode fabricated by EBL and wet- etching process. • Separate experiments showed 50MHz high speed.
  • 34. 34 ZnO based planar nanodiode operating at 50 MHz* Optical image AFM image Frequency response •A parallel array of 50 SSDs fabricated by EBL and wet-etching •Input – a sinusoidal voltage supply of 4V (RMS value) •Separate experiment – ZnO TFTs mobility 0.1 to 0.3 cm2/Vs. •If ZnO films with higher mobilities are used, frequency response can be up to a few GHz.
  • 35. 35 ZnO based planar inverter Channel Length (μm) Channel Width (nm) SSD 2 500 SGT 2 450 • All terminals on the same layers. • No need of interconnect layers. • Circuits are fabricated by “writing” lines on the substrate.
  • 36. 36 Circuits applications NOR NAND 1 1 1 0 1 0 A B 1 0 A B Out NAND 1 0 0 0 1 0 A B 1 0 A B Out NOR
  • 37. 37 Novel technology for planar ultra-fast devices One lithography step No mask alignment nanoimprinting Easier interconnect layers
  • 38. 38 Low parasitics = high speed RFID tagging Fast logics THz technology ZnO GaAs Novel technology for planar ultra-fast devices