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Shenyu Dai
Shenyu Dai
Jihua Laboratory
在 jihualab.com 的电子邮件经过验证
标题
引用次数
引用次数
年份
Revealing the Origin of Luminescence Center in 0D Cs4PbBr6 Perovskite
Z Qin, S Dai, VG Hadjiev, C Wang, L Xie, Y Ni, C Wu, G Yang, S Chen, ...
Chemistry of Materials 31 (21), 9098-9104, 2019
1102019
Extrinsic green photoluminescence from the edges of 2D cesium lead halides
C Wang, Y Wang, X Su, VG Hadjiev, S Dai, Z Qin, ...
Advanced Materials 31 (33), 1902492, 2019
872019
Spontaneous formation of 2D/3D heterostructures on the edges of 2D Ruddlesden–Popper hybrid perovskite crystals
Z Qin, S Dai, CC Gajjela, C Wang, VG Hadjiev, G Yang, J Li, X Zhong, ...
Chemistry of Materials 32 (12), 5009-5015, 2020
572020
2.78 μm passively Q-switched Er3+-doped ZBLAN fiber laser based on PLD-Fe2+: ZnSe film
T Zhang, G Feng, H Zhang, X Yang, S Dai, S Zhou
Laser Physics Letters 13 (7), 075102, 2016
362016
Ultrathin bismuth oxyiodide nanosheets for photocatalytic ammonia generation from nitrogen and water under visible to near-infrared light
M Mohebinia, C Wu, G Yang, S Dai, A Hakimian, T Tong, H Ghasemi, ...
Materials Today Physics 16, 100293, 2021
342021
Photoluminescence mapping and time-domain thermo-photoluminescence for rapid imaging and measurement of thermal conductivity of boron arsenide
S Yue, GA Gamage, M Mohebinia, D Mayerich, V Talari, Y Deng, F Tian, ...
Materials Today Physics 13, 100194, 2020
262020
Mid-infrared Fe2+: ZnSe semiconductor saturable absorber mirror for passively Q-switched Er3+-doped ZBLAN fiber laser
S Ning, G Feng, S Dai, H Zhang, W Zhang, L Deng, S Zhou
AIP Advances 8 (2), 2018
182018
Fabrication, structure and optical application of Fe2+: ZnSe nanocrystalline film
S Ning, G Feng, H Zhang, W Zhang, S Dai, S Zhou
Optical Materials 89, 473-479, 2019
172019
Femtosecond pulsed laser ablation in microfluidics for synthesis of photoluminescent ZnSe quantum dots
C Yang, G Feng, S Dai, S Wang, G Li, H Zhang, S Zhou
Applied Surface Science 414, 205-211, 2017
172017
Q-switched mid-infrared Er3+: ZBLAN fiber laser based on gold nanocrystals
W Zhang, G Feng, S Dai, H Zhang, Y Ju, S Ning, C Yang, Y Xiao, S Zhou
Laser Physics 28 (9), 095104, 2018
162018
Fabrication of Fe2+:ZnSe nanocrystals and application for a passively Q-switched fiber laser
S Ning, G Feng, H Zhang, W Zhang, S Dai, Y Xiao, W Li, X Chen, S Zhou
Optical Materials Express 8 (4), 865-874, 2018
152018
Improving the quality of femtosecond laser processing micro-hole array by coated with aluminum film on fused silica sheet
Z Wang, G Feng, S Wang, G Li, S Dai, S Zhou
Optik 128, 178-184, 2017
142017
Random lasing from Rhodamine 6G doped ethanediol solution based on the cicada wing nanocones
H Zhang, G Feng, H Zhang, C Yang, J Yin, S Dai, S Zhou
Laser Physics 26 (6), 065004, 2016
142016
First‐principles study of the electronic structures and optical properties of Cr2+‐doped ZnSe as a function of impurity concentration
Y Zhang, G Feng, S Dai, S Ning, S Zhou
physica status solidi (b) 253 (6), 1133-1137, 2016
132016
First-principles analysis of the absorption and luminescence properties of Cr2+-doped ZnSe crystal
Y Zhang, G Feng, S Dai, S Ning, S Zhou
Current Applied Physics 16 (5), 501-505, 2016
132016
The effects of the impurity distribution on the electrical and optical properties of Cr2+: ZnSe nanowires: First-principles study
S Dai, G Feng, Y Zhang, L Deng, H Zhang, S Zhou
Results in physics 8, 628-632, 2018
122018
Fabrication of microhole arrays on coated silica sheet using femtosecond laser
Z Wang, G Feng, J Han, S Wang, R Hu, G Li, S Dai, S Zhou
Optical Engineering 55 (10), 105101-105101, 2016
92016
4.24 μm mid-infrared laser based on a single Fe2+-doped ZnSe microcrystal
S Dai, G Feng, H Zhang, S Ning, Y Xiao, S Zhou
Optics letters 43 (3), 411-414, 2018
82018
The phase transition and optical properties of Cr2+-doped ZnSe under high pressure
L Deng, G Feng, S Dai, H Zhang, S Ning
Results in Physics 12, 776-783, 2019
72019
Designing diffractive optical elements for shaping partially coherent beams by proximity correction
S Dai, X Zheng, S Zhao
Optics Express 31 (9), 14464-14472, 2023
42023
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