贾乐敏
助理研究员
2023.10-至今, 福州大学,物理与信息工程学院,助理研究员
2018-2023,中山大学,材料科学与工程,工学博士 (硕博连读)
2014-2018,西北工业大学,化学工程与工艺,工学学士

主要围绕“宽禁带半导体光电探测器”和“真空光电测试系统搭建”开展工作,从事光伏、雪崩原型器件和面阵探测器的科学和技术问题研究,以及宽禁带半导体的光谱和光电性质研究。共参与发表SCI论文30余篇,总被引700余次。

硕士生导师,欢迎对宽禁带半导体器件研究感兴趣的同学加入。
Email:jialm@fzu.edu.cn
 
 
科研项目(Research project)  
1-氮化铝基真空紫外面阵探测器新结构与关键技术研究12万福建省中青年教师教育科研重点项目2025.01-2027.12独立撰编写 
21科研启动项目10万福州大学2024.04-2026.03独立撰编写 
321050001066真空极紫外光电探测器100万广东省自然科学基金委员会, 杰出青年项目2021.01-2024.122 
 
科技论著(Scientific treatise)  
1Ultrafast Diamond Photodiodes for Vacuum Ultraviolet Imaging in Space-Based ApplicationsAdvanced Optical Materials, 2024卓越期刊1
28-nm narrowband photodetection in diamondsOpto-Electronic Science,2023卓越期刊1
3Vacuum Ultraviolet (120-200 nm) Avalanche Photodetectors.Advanced Optical Materials, 2022卓越期刊1
4Extremely High Photovoltage (3.16 V) Achieved in Vacuum-Ultraviolet-Oriented van der Waals Photovoltaics.ACS Photonics, 2022卓越期刊1
5Observation of negative differential resistance in SiO2/Si heterostructuresCell Reports Physical Science, 2021卓越期刊1
6Vacuum-ultraviolet photodetectorsPhotoniX, 2020卓越期刊1
7Ultra-high Photovoltage (2.45 V) Forming in Graphene Heterojunction via Quasi-Fermi Level Splitting Enhanced EffectiScience, 2020卓越期刊1
8Vacuum-Ultraviolet Photon Detections iScience, 2020卓越期刊1
9Ultra-Long Van Der Waals CdBr2 Micro/NanobeltsSmall Methods, 2020卓越期刊1
10Fermi-Surface Modulation of Graphene Synergistically Enhances the Open-Circuit Voltage and Quantum Efficiency of Photovoltaic Solar-Blind Ultraviolet DetectorsThe Journal of Physical Chemistry Letters,2021卓越期刊2
11Amorphous (LuGa)2O3 Film for Deep-Ultraviolet Photovoltaic DetectorMaterials Letters,2021SCI期刊2
12Boron tin oxide for filterless intrinsic-narrowband solar-blind ultraviolet detectors with tunable photoresponse peak from 231 to 275 nmAPL Photonics,2024卓越期刊其它
13Vacuum-ultraviolet (λ < 200 nm) photodetector arrayPhotoniX,2024卓越期刊其它
14Ultrahigh EQE (38.1%) Deep‐UV Photodiode with Chemically‐Doped Graphene as Hole Transport LayerAdvanced Optical Materials,2021卓越期刊其它
15Ultrawide-bandgap (6.14 eV) (AlGa)2O3/Ga2O3 heterostructure designed by lattice matching strategy for highly sensitive vacuum ultraviolet photodetectionScience China Materials,2021卓越期刊其它