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本帖最后由 clylan 于 2021-10-20 13:19 编辑
Micro LEDs精华书(包含各经典paper)Publication:2021年06月
大家学习之用,建议使用正版!
Contents
Contributors ix
Preface xiii
1. Development of nitride microLEDs and displays 1
Hongxing Jiang and Jingyu Lin
1. Introduction 1
2. MicroLED structure and processing 6
3. MicroLED array for high voltage AC/DC-LEDs 13
4. Realization of the first full-scale active driving microLED microdisplay 19
5. MicroLED and microLED display characteristics 25
6. Full color microdisplay development 36
7. Applications in large flat panel displays and medicine 47
8. Concluding remarks 50
Acknowledgments 50
References 51
2. Micro-LEDs for biomedical applications 57
Jonathan J.D. McKendry, Erdan Gu, Niall McAlinden, Nicolas Laurand,
Keith Mathieson, and Martin D. Dawson
1. Introduction 58
2. Micro-LED characteristics 60
3. GaN LED/CMOS chip-scale microfluorimetry with SPADs 64
4. Micro-LED based optoelectronic tweezers 71
5. Light-emitting dressings and printed LEDs 78
6. Optogenetic neural probes and neural interfaces 83
7. Conclusion 89
Acknowledgments 89
References 89
3. High external quantum efficiency III-nitride
micro-light-emitting diodes 95
Matthew S. Wong, Shuji Nakamura, and Steven P. DenBaars
1. Introduction 95
2. Size-dependent efficiency 96
3. Techniques toward high efficiency 99
v
4. Long-wavelength devices 111
5. Conclusion 114
References 114
4. GaN-on-silicon MicroLEDs for neural interfaces 123
Kanghwan Kim, Fan Wu, Kensall D. Wise, and Euisik Yoon
1. Introduction 124
2. Michigan probes and optogenetics 126
3. Optoelectrodes: Optical stimulation combined with electrical recording
within an integrated platform 131
4. GaN-on-silicon microLED optoelectrodes 140
5. Minimizing stimulation artifact 152
6. Discussion 164
7. Conclusion 165
References 166
5. Quantum-dot-based full-color micro-LED displays 173
Tingzhu Wu, Yu-Ming Huang, James Singh Konthoujam, Zhong Chen,
and Hao-Chung Kuo
1. Introduction 173
2. Background of full-color micro-LED display 175
3. Conclusion 198
References 198
6. Damage-free neutral beam etching for GaN micro-LEDs
processing 203
Xuelun Wang and Seiji Samukawa
1. Introduction 203
2. Neutral beam generation source 205
3. Application of NBE for fabrication of sub-10-nm nanostructures 209
4. Sub-10-μm GaN micro-LEDs fabricated by NBE 213
5. Conclusion 219
References 220
7. From nanoLEDs to the realization of RGB-emitting microLEDs 223
Zhaoxia Bi, Zhen Chen, Fariba Danesh, and Lars Samuelson
1. An industrial perspective on the market pull for the development
of microLED displays 223
vi Contents
2. General description of the challenges, status, and needs for progress 225
3. An overview of our different material science approaches toward
long-wavelength nitride emitters 226
4. Industrial approaches toward mass transfer of microLEDs 245
5. Outlook 247
Acknowledgments 248
References 248
8. Mass transfer for Micro-LED display: Transfer printing
techniques 253
Changhong Linghu, Shun Zhang, Chengjun Wang, Hongyu Luo, and
Jizhou Song
1. Introduction 253
2. Mass transfer techniques for Micro-LED displays 255
3. Transfer printing techniques for Micro-LED assembly 259
4. Latest development of transfer printing techniques 261
5. Conclusion 276
References 277
9. Micro-LED based optical wireless communications systems 281
P. Tian, Jonathan J.D. McKendry, J. Herrnsdorf, S. Zhu, Erdan Gu,
Nicolas Laurand, and Martin D. Dawson
1. Introduction 281
2. Device-related characteristics 283
3. Micro-LED based high-speed VLC systems 295
4. Novel optical wireless communication systems based on micro-LED 305
5. Conclusion 316
Acknowledgments 317
References 317
Further reading 321
10. Angular color shift and power consumption of RGB micro-LED
displays 323
Fangwang Gou, En-Lin Hsiang, and Shin-Tson Wu
1. Angular color shift of RGB micro-LEDs 323
2. Power consumption 333
References 342
Contents vii
11. Monolithic integration of AlGaInP red and InGaN blue/green
LEDs 345
Dong-Seon Lee and Sang Hyeon Kim
1. Introduction 345
2. Multi-color integration by wafer bonding 354
3. Toward high-resolution microLED display 369
4. Conclusion 383
References 385
Index 389
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P173-201-Chapter Five - Quantum-dot-based full-color micro-LED displays.pdf
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P123-172-Chapter Four - GaN-on-silicon MicroLEDs for neural interfaces.pdf
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P57-94-Chapter Two - Micro-LEDs for biomedical applications.pdf
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P1-56-Chapter One - Development of nitride microLEDs and displays.pdf
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P95-121-Chapter Three - High external quantum efficiency III-nitride micro-light.pdf
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P203-221-Chapter Six - Damage-free neutral beam etching for GaN micro-LEDs processing.pdf
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P223-251-Chapter Seven - From nanoLEDs to the realization of RGB-emitting microLEDs.pdf
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P253-280-Chapter Eight - Mass transfer for Micro-LED display:Transfer printing .pdf
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P281-321-Chapter Nine - Micro-LED based optical wireless communications systems.pdf
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P345-387-Chapter Eleven - Monolithic integration of AlGaInP red and InGaN blue o.pdf
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P389-396-Index.pdf
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P罗马2-Series Page.pdf
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P罗马4-Copyright.pdf
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P罗马9-11-Contributors.pdf
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P罗马13-14-Preface.pdf
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P322-344-Chapter Ten - Angular color shift and power consumption of RGB micro-LE.pdf
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