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Ya-Ze Li
Researcher at Ming Chi University of Technology
Publications - 26
Citations - 278
Ya-Ze Li is an academic researcher from Ming Chi University of Technology. The author has contributed to research in topics: OLED & Dark current. The author has an hindex of 8, co-authored 25 publications receiving 181 citations. Previous affiliations of Ya-Ze Li include National Taiwan University of Science and Technology.
Papers
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Journal ArticleDOI
New D–A–A-Configured Small-Molecule Donors for High-Efficiency Vacuum-Processed Organic Photovoltaics under Ambient Light
Chia-Hsun Chen,Hao-Chun Ting,Ya-Ze Li,Yuan-Chih Lo,Pin-Hao Sher,Juen-Kai Wang,Tien-Lung Chiu,Tien-Lung Chiu,Chi-Feng Lin,I-Sheng Hsu,Jiun-Haw Lee,Shun-Wei Liu,Ken-Tsung Wong +12 more
TL;DR: The study of PCE dependence on the light intensity indicates the DTCPB-based device exhibits superior exciton dissociation and less propensity of geminated recombination, which was further verified by a steady photoluminescence study.
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ITO-free, efficient, and inverted phosphorescent organic light-emitting diodes using a WO3/Ag/WO3 multilayer electrode
Shun-Wei Liu,Tsung-Hao Su,Po-Chien Chang,Tzu-Hung Yeh,Ya-Ze Li,Ling-Jie Huang,Yu-Hui Chen,Chun-Feng Lin +7 more
TL;DR: In this paper, an indium tin oxide (ITO)-free, bottom-emission inverted phosphorescent organic light-emitting diode (PHOLED) with a maximum luminance of 280,000cd/m 2 at 8V, total maximum current efficiency of 81.4% and external quantum efficiency of 22.4%.
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Vacuum-Processed Small Molecule Organic Photodetectors with Low Dark Current Density and Strong Response to Near-Infrared Wavelength
Chih-Chien Lee,Richie Estrada,Richie Estrada,Ya-Ze Li,Ya-Ze Li,Sajal Biring,Nurul Ridho Al Amin,Nurul Ridho Al Amin,Meng-Zhen Li,Meng-Zhen Li,Shun-Wei Liu,Ken-Tsung Wong,Ken-Tsung Wong +12 more
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Reduction of dark current density in organic ultraviolet photodetector by utilizing an electron blocking layer of TAPC doped with MoO3
Chih-Chien Lee,Sajal Biring,Shiang-Jen Ren,Ya-Ze Li,Meng-Zhen Li,Nurul Ridho Al Amin,Shun-Wei Liu +6 more
TL;DR: In this article, a 5% MoO3 dopant was used to improve the performance of organic photodetector (OPD), which effectively suppressed dark current density and increased external quantum efficiency (EQE).
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Inducing the trap-site in an emitting-layer for an organic upconversion device exhibiting high current-gain ratio and low turn-on voltage
TL;DR: In this paper, a fabrication method of controlling the doped concentration of phosphorescent dye to induce the trap-site in an emitting layer (EML) for an efficient near-infrared (NIR) organic upconversion device (OUD) was reported.