OLED display fundamentals and applications:
Gespeichert in:
1. Verfasser: | |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Hoboken, NJ
Wiley
2017
|
Ausgabe: | Second edition |
Schriftenreihe: | Wiley-SID series in display technology
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis Klappentext |
Beschreibung: | xvi, 287 Seiten Illustrationen, Diagramme |
ISBN: | 9781119187318 |
Internformat
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650 | 4 | |a Electrtoluminescent devices | |
650 | 4 | |a Organic semiconductors | |
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Datensatz im Suchindex
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adam_text | Contents
A
About the Author xi
Preface xiii
Series Editor s Foreword to the Second Edition
XV
Introduction 1
References 5
2 OLED Devices 7
2.1 OLED Definition 7
2.1.1 History of OLED Research and Development 7
2.1.2 Luminescent Effects in Nature 8
2.1.3 Difference Between OLED, LED, and Inorganic ELs 11
2.1.3.1 Inorganic EL 11
2.1.3.2 LED 11
2.2 Basic Device Structure 12
2.3 Basic Light Emission Mechanism 14
2.3.1 Potential Energy of Molecules 14
2.3.2 Highest Occupied and Lowest Unoccupied Molecular Orbitals
(HOMO and LUMO) 15
2.3.3 Configuration of Two Electrons 17
2.3.4 Spin Function 20
2.3.5 Singlet and Triplet Excitons 20
2.3.6 Charge Injection from Electrodes 24
2.3.6.1 Charge Injection by Schottky Thermionic Emission 25
2.3.6.2 Tunneling Injection 28
2.3.6.3 Vacuum-Level Shift 28
2.3.7 Charge Transfer and Recombination 29
2.3.7.1 Charge Transfer Behavior 29
2.3.7.2 Space-Charge-Limited Current 29
2.3.7.3 Poole-Frenkel conduction 32
2.3.7.4 Recombination and Generation of Excitons 33
v i I Contents
2.4
2.4.1
2.4.2
2.4.2.1
2.4.2.2
2.4.2.3
2.4.2.4
2.4.3
2.4.3.1
2.4.3.2
2.4.3.3
2.4.3.4
2.5
2.5.1
2.5.2
2.5.3
2.5.3.1
2.5.3.2
2.6
2.6.1
2.6.2
2.6.2.1
2.6.2.2
2.6.3
3
3.1
3.1.1
3.1.1.1
3.1.1.2
3.1.1.3
3.1.1.4
3.1.2
3.2
3.2.1
3.2.2
3.2.2.1
3.2.2.2
3.2.2.3
3.3
3.3.1
Emission Efficiency 36
Internal/External Quantum Efficiency 36
Energy Conversion and Quenching 37
Internal Conversion 37
Intersystem Crossing 37
Doping 38
Quenching 40
Outcoupling Efficiency of OLED Display 42
Light Output Distribution 42
Snell s Law and Critical Angle 43
Loss Due to Light Extraction 44
Performance Enhancement by Molecular Alignment 45
Lifetime and Image Burning 46
Lifetime Definitions 46
Degradation Analysis and Design Optimization 47
Degradation Measurement and Mechanisms SO
Acceleration Factor and Temperature Contribution 50
Degradation Mechanism Variation 50
Technologies to Enhance the Device Performance 51
Thermally Activated Delayed Fluorescence 51
Other Types of Excited States 53
Excimer and Exciplex 53
Charge-Transfer Complex 53
Charge Generation Layer 54
References 56
OLED Manufacturing Process 61
Material Preparation 61
Basic Material Properties 61
Hole Injection Material 61
Hole Transportation Material 62
Emission Layer Material 62
Electron Transportation Material and Charge Blocking Material 63
Purification Process 67
Evaporation Process 68
Principle 68
Evaporation Sources 72
Resistive Heating Method 72
Electron Beam Evaporation 75
Monitoring Thickness Using a Quartz Oscillator 76
Encapsulation 79
Dark Spot and Edge Growth Defects 79
Contents 1 vii
3.3.2 Light Emission from the Bottom and Top of the OLED Device 80
3.3.3 Bottom Emission and perimeter sealing 81
3.3.4 Top Emission 82
3.3.5 Encapsulation Technologies and Measurement 83
3.3.5.1 Thin-Film Encapsulation 84
3.3.5.2 Face Sealing Encapsulation 87
3.3.5.3 Frit Encapsulation 88
3.3.5.4 WVTR Measurement 58
3.4 Problem Analysis 91
3.4.1 Ionization Potential Measurement 91
3.4.2 Electron Affinity Measurement 92
3.4.3 HPLC Analysis 93
3.4.4 Cyclic Voltammetry 94
References 96
4 OLED Display Module 99
4.1 Comparison Between OLED and LCD Modules 99
4.2 Basic Display Design and Related Characteristics 101
4.2.1 Luminous Intensity, Luminance, and Illuminance 101
4.2.1.1 Luminous Intensity 101
4.2.1.2 Luminance 102
4.2.1.3 Illuminance 103
4.2.1.4 Metrics Summary 104
4.2.1.5 Helmholtz-Kohlrausch Effect 106
4.2.2 OLED Current Efficiencies and Power Efficacies 106
4.2.3 Color Reproduction 109
4.2.4 Uniform Color Space 115
4.2.5 White Point Determination 116
4.2.6 Color Boost 119
4.2.7 Viewing Condition 120
4.3 Passive-Matrix OLED Display 121
4.3.1 Structure 121
4.3.2 Pixel Driving 122
4.4 Active-Matrix OLED Display 125
4.4.1 OLED Module Components 125
4.4.2 Two-Transistor One-Capacitor (2T1C) Driving Circuit 127
4.4.3 Ambient Performance 136
4.4.3.1 Living Room Contrast Ratio 136
4.4.3.2 Chroma Reduction Due to Ambient Light 137
4.4.4 Subpixel Rendering 138
References 139
vïîi I Contents
5 OLED Color Patterning Technologies 143
5.1 Color-Patterning Technologies 143
5.1.1 Shadow Mask Patterning 143
5.1.1*1 Shadow Mask Process 143
5.1.1.2 Blue Common Layer 146
5.1.1.3 Polychromatic Pixel 147
5.1.2 White 4* Color Filter Patterning 148
5.1.3 Color Conversion Medium (CCM) Patterning 149
5.1.4 Laser-Induced Thermal Imaging (LITI) Method 149
5.1.5 Radiation-Induced Sublimation Transfer (RIST) Method 151
5.1.6 Dual-Plate OLED Display (DOD) Method 152
5.1.7 Other Methods 153
5.2 Solution-Processed Materials and Technologies 153
5.3 Next-Generation OLED Manufacturing Tools 158
5.3.1 Vapor Injection Source Technology (VIST) Deposition 158
5.3.2 Hot-Wall Method 163
5.3.3 Organic Vapor-Phase Deposition (OVPD) Method 164
References 165
6 TFT and Driving for Active-Matrix Display 167
6.1 TFT Structure 167
6.2 TFT Process 169
6.2.1 Low-Temperature Polysilicon Process Overview 169
6.2.2 Thin-Film Formation 172
6.2.3 Patterning Technique 173
6.2.4 Excimer Laser Crystallization 177
6.3 MOSFET Basics 180
6.4 LTPS-TFT-Driven OLED Display Design 183
6.4.1 OFF Current 183
6.4.2 Driver TFT Size Restriction 184
6.4.3 Restriction Due to Voltage Drop 185
6.4.4 LTPS-TFT Pixel Compensation Circuit 190
6.4.4.1 Voltage Programming 190
6.4.4.2 Current Programming 192
6.4.4.3 External Compensation Method 193
6.4.4.4 Digital Driving 194
6.4.5 Circuit Integration by LTPS-TFT 197
6.5 TFT Technologies for OLED Displays 200
6.5.1 Selective Annealing Method 200
6.5.1.1 Sequential Lateral Solidification (SLS) Method 200
6.5.1.2 Selective Annealing by Microlens Array 200
6.5.2 Microcrystalline and Superamorphous Silicon 202
6.5.3 Solid-Phase Crystallization 205
Contents I ix
6.53.1
6.53.2
6.5.4
7
7.1
7.2
7.2.1
7.2.1.1
7.2.1.2
7.2.2
7.2.2.1
73
7.3.1
7.3.2
7.4
7.4.1
7.4.1.1
7.4.1.2
7.4.13
7.4.1.4
8
8.1
8.1.1
8.1.2
8.1.3
8.1.4
8.1.5
8.1.5.1
8.1.5.2
8.1.53
8.2
MIC and MILC Methods 205
AMFC Method 205
Oxide Semiconductors 207
References 210
OLED Television Applications 215
Performance Target 215
Scalability Concept 217
Relationship between Defect Density and Production Yield 217
Purpose of Yield Simulation 217
Defective Pixel Number Estimation Using the Poisson
Equation 217
Scalable Technology 217
Scalability 218
Murdoch s Algorithm to Achieve Low Power and Wide Color
Gamut 219
A Method for Achieving Both Low Power and Wide Color
Gamut 219
RGBW Driving Algorithm 221
An Approach to Achieve 100% NTSC Color Gamut With Low Power
Consumption Using White + Color Filter 224
Consideration of Performance Difference between W-RGB and
W-RGBW Method 224
Issues of White 4* Color Filter Method for Large Displays 224
Analysis of W-RGBW Approach to Circumvent Its Trade-off
Situation 224
Design of a Prototype to Demonstrate That Low Power
Consumption Can Be Achieved with Large Color Gamut 229
Product-Level Performance Demonstration by the Combination of
Scalable Technologies 230
References 233
New OLED Applications 235
Flexible Display/Wearable Displays 235
Flexible Display Applications 235
Flexible Display Substrates 235
Laser Liftoff Process 236
Barrier Technology for Flexible Displays 240
Organic TFTs for Flexible Displays 241
Organic Semiconductor Materials 242
Organic TFT Device Structure and Processing 243
Organic TFT Characteristics 245
Transparent Displays 245
Contents
83 Tiled Display 247
83.1 Passive-Matrix Tiling 247
83.2 Active-Matrix Tiling 248
References 252
9 OLED Lighting 255
9.1 Performance Improvement of OLED Lighting 255
9.2 Color Rendering Index 257
93 OLED Lighting Requirement 259
93.1 Correlated Color Temperature (CCT) 260
93.2 Other Requirements 262
9.4 Light Extraction Enhancement of OLED Lighting 262
9.4.1 Various Light Absorption Mechanisms 262
9.4.2 Microlens Array Structure 266
9.43 Diffusion Structure 266
9.4.4 Diffraction Structure 268
9.4.5 Reduction of Plasmon Absorption 268
9.4.5.1 Plasmonic Loss Mechanism 268
9.5 Color Tunable OLED Lighting 269
9.6 OLED Lighting Design 272
9.6.1 Resistance Reduction 272
9.6.2 Current Reduction 272
9.7 Roll-to-Roll OLED Lighting Manufacturing 273
References 275
Appendix 277
Index 281
OLED DISPLAY FUNDAMENTALS
AND APPLICATIONS
SECOND EDITION
This new edition specifically addresses the most recent and relevant developments in the
design and manufacture of OLED displays
OLED Display Fundamentals and Applications, 2nd Edition serves as an up-to-date reference
for people engaged in OLED research, manufacturing, applications, and marketing. Topics
include emission mechanism, material selection, device processing, manufacturing issues
and countermeasures, and display design basics. Also, the book defines elements of OLED
display backplane such as thin film transistor (TFT) backplane design and processing details,
including low-temperature poly silicon (LTPS) process and circuit integration, and high yield
method to manufacturer. While discussing the current composition of OLED, the book also
explores the future for OLED technologies and displays. In addition, this book:
• Provides knowledge of OLED fundamentals and related technologies for applications such
as displays and solid state lighting along with processing and manufacturing technologies
• Serves as a reference for people engaged in OLED research, manufacturing, applications,
and marketing
• Includes coverage of white + color filter technology, which has become industry standard
technology for large televisions
TAKATOSHI TSUJIMURA is General Manager of the Konica Minolta Inc. He received an
SID award for the development of the world’s largest 20-inch OLED prototype and also
received SID Fellow award for the development of 100% NTSC white + color filter technology.
He has worked for Kodak and IBM and is an SID executive. Dr. Tsujimura was selected as one
of the “10 best engineers/researchers in the 10 best Japanese companies”
by Nikkei Electronics magazine.
Wiley
SID
Series in Display Technology
Series Editors: Anthony C. Lowe, The Lambent Consultancy, Braishfield, UK
Ian Sage, Abelian Services, Malvern, UK
The Society for Information Display (SID) is an international society which has the aim of encour
aging the development of all aspects of the field of information display. Complementary
to the aims of the society, the Wiley-SID series is intended to explain the latest developments
in information display technology at a professional level. The broad scope of the series
addresses all facets of information displays from technical aspects through systems
and prototypes to standards and ergonomics.
Cover Design: Wiley
Cover Image: © Blend Images - Colin Anderson/Gettyimages
www.wiley.com
WI L E Y Ш
ISBN 978-1-119-18731-8
|
any_adam_object | 1 |
author | Tsujimura, Takatoshi |
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dewey-search | 621.3815/422 |
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discipline | Physik Elektrotechnik / Elektronik / Nachrichtentechnik |
edition | Second edition |
format | Book |
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physical | xvi, 287 Seiten Illustrationen, Diagramme |
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series2 | Wiley-SID series in display technology |
spelling | Tsujimura, Takatoshi Verfasser aut OLED display fundamentals and applications Takatoshi Tsujimura Second edition Hoboken, NJ Wiley 2017 xvi, 287 Seiten Illustrationen, Diagramme txt rdacontent n rdamedia nc rdacarrier Wiley-SID series in display technology TECHNOLOGY & ENGINEERING / Electronics / General / bisacsh Flat panel displays Electrtoluminescent devices Organic semiconductors Light emitting diodes TECHNOLOGY & ENGINEERING / Electronics / General Lumineszenzdiode (DE-588)4125154-4 gnd rswk-swf OLED (DE-588)4762455-3 gnd rswk-swf OLED (DE-588)4762455-3 s Lumineszenzdiode (DE-588)4125154-4 s DE-604 Erscheint auch als Online-Ausgabe, epub 978-1-119-18748-6 Erscheint auch als Online-Ausgabe, epdf 978-1-119-18732-5 Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=029796445&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=029796445&sequence=000002&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA Klappentext |
spellingShingle | Tsujimura, Takatoshi OLED display fundamentals and applications TECHNOLOGY & ENGINEERING / Electronics / General / bisacsh Flat panel displays Electrtoluminescent devices Organic semiconductors Light emitting diodes TECHNOLOGY & ENGINEERING / Electronics / General Lumineszenzdiode (DE-588)4125154-4 gnd OLED (DE-588)4762455-3 gnd |
subject_GND | (DE-588)4125154-4 (DE-588)4762455-3 |
title | OLED display fundamentals and applications |
title_auth | OLED display fundamentals and applications |
title_exact_search | OLED display fundamentals and applications |
title_full | OLED display fundamentals and applications Takatoshi Tsujimura |
title_fullStr | OLED display fundamentals and applications Takatoshi Tsujimura |
title_full_unstemmed | OLED display fundamentals and applications Takatoshi Tsujimura |
title_short | OLED display fundamentals and applications |
title_sort | oled display fundamentals and applications |
topic | TECHNOLOGY & ENGINEERING / Electronics / General / bisacsh Flat panel displays Electrtoluminescent devices Organic semiconductors Light emitting diodes TECHNOLOGY & ENGINEERING / Electronics / General Lumineszenzdiode (DE-588)4125154-4 gnd OLED (DE-588)4762455-3 gnd |
topic_facet | TECHNOLOGY & ENGINEERING / Electronics / General / bisacsh Flat panel displays Electrtoluminescent devices Organic semiconductors Light emitting diodes TECHNOLOGY & ENGINEERING / Electronics / General Lumineszenzdiode OLED |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=029796445&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=029796445&sequence=000002&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT tsujimuratakatoshi oleddisplayfundamentalsandapplications |