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Chaoyu Xiang
Chaoyu Xiang
Professor of Ningbo Institute of Materials, CAS
Zweryfikowany adres z nimte.ac.cn
Tytuł
Cytowane przez
Cytowane przez
Rok
Highly stable QLEDs with improved hole injection via quantum dot structure tailoring
W Cao, C Xiang, Y Yang, Q Chen, L Chen, X Yan, L Qian
Nature communications 9 (1), 2608, 2018
3572018
A systematic study on efficiency enhancements in phosphorescent green, red and blue microcavity organic light emitting devices
C Xiang, W Koo, F So, H Sasabe, J Kido
Light: Science & Applications 2 (6), e74-e74, 2013
3022013
High efficiency and stability of ink-jet printed quantum dot light emitting diodes
C Xiang, L Wu, Z Lu, M Li, Y Wen, Y Yang, W Liu, T Zhang, W Cao, ...
Nature Communications 11 (1), 1-9, 2020
1772020
Efficiency roll‐off in blue emitting phosphorescent organic light emitting diodes with carbazole host materials
C Xiang, X Fu, W Wei, R Liu, Y Zhang, V Balema, B Nelson, F So
Advanced Functional Materials 26 (9), 1463-1469, 2016
862016
Origin of Sub‐Bandgap Electroluminescence in Organic Light‐Emitting Diodes
C Xiang, C Peng, Y Chen, F So
Small 11 (40), 5439-5443, 2015
602015
Phase dimensions resolving of efficient and stable perovskite light-emitting diodes at high brightness
S Ding, Q Wang, W Gu, Z Tang, B Zhang, C Wu, X Zhang, H Chen, ...
Nature Photonics 18 (4), 363-370, 2024
512024
Solution processed multilayer cadmium-free blue/violet emitting quantum dots light emitting diodes
C Xiang, W Koo, S Chen, F So, X Liu, X Kong, Y Wang
Applied Physics Letters 101 (5), 2012
512012
Improving charge injection via a blade-coating molybdenum oxide layer: toward high-performance large-area quantum-dot light-emitting diodes
Q Zeng, Z Xu, C Zheng, Y Liu, W Chen, T Guo, F Li, C Xiang, Y Yang, ...
ACS applied materials & interfaces 10 (9), 8258-8264, 2018
502018
Stable solution processed hole injection material for organic light-emitting diodes
S Ho, C Xiang, R Liu, N Chopra, M Mathai, F So
Organic Electronics 15 (10), 2513-2517, 2014
272014
Phosphorescent organic light emitting diodes with a cross-linkable hole transporting material
C Xiang, N Chopra, J Wang, C Brown, S Ho, M Mathai, F So
Organic Electronics 15 (7), 1702-1706, 2014
262014
6‐2: Invited Paper: Key Challenges towards the Commercialization of Quantum‐Dot Light‐Emitting Diodes
L Qian, Y Yang, W Cao, C Xiang, X Xie, Z Liu, S Chen, L Wu, X Yan
SID symposium digest of technical papers 48 (1), 55-57, 2017
212017
Planar Organic‐Si Hybrid Solar Cell with MoOx Mixed PEDOT:PSS as Hole Injection Layer Profits from Mo5+ and Mo6+ Synergistic Effects
W Fang, P Wang, Z Ni, T Sun, C Xiang, K Yue, R Wang, J Yang, Y Zhou, ...
Advanced Materials Interfaces 7 (19), 2000754, 2020
192020
Proton-Prompted Ligand Exchange to Achieve High-Efficiency CsPbI3 Quantum Dot Light-Emitting Diodes
Y Li, M Deng, X Zhang, L Qian, C Xiang
Nano-Micro Letters 16 (1), 105, 2024
152024
Recent Progress of Quantum Dots Light‐Emitting Diodes: Materials, Device Structures, and Display Applications
J Fan, C Han, G Yang, B Song, R Xu, C Xiang, T Zhang, L Qian
Advanced Materials, 2312948, 2024
142024
OLED devices having improved efficiency
R Ma, JJ Brown, C Xiang, M Hack, J Paynter
US Patent 10,686,159, 2020
142020
Stable Perovskite Quantum Dots Light‐Emitting Diodes with Efficiency Exceeding 24%
X Zhang, Q Wang, Z Yao, M Deng, J Wang, L Qian, Y Ren, Y Yan, ...
Advanced Science 10 (36), 2304696, 2023
132023
The Dawn of QLED for the FPD Industry
C Xiang, W Cao, Y Yang, L Qian, X Yan
Information Display 34 (6), 14-17, 2018
112018
Stable and efficient CsPbI3 quantum-dot light-emitting diodes with strong quantum confinement
Y Li, M Deng, X Zhang, T Xu, X Wang, Z Yao, Q Wang, L Qian, C Xiang
Nature Communications 15 (1), 5696, 2024
102024
Devices to increase OLED output coupling efficiency with a high refractive index substrate
C Xiang, R Ma
US Patent 9,640,781, 2017
92017
5.3: Highly Efficient Phosphorescent OLEDs Fabricated on Corrugated High‐Index‐Refractive Substrates
W Youn, J Lee, M Xu, C Xiang, R Singh, F So
SID Symposium Digest of Technical Papers 45 (1), 40-41, 2014
92014
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