期刊目次

加入编委

期刊订阅

添加您的邮件地址以接收即将发行期刊数据:

当前位置:首页 > 编委信息 > 编委详情
李尧
职称:副教授
单位:兰州交通大学
社会任职:

个人简介

李尧,男,兰州交通大学,博士生导师,研究方向为半导体器件;器件设计与仿真;器件物理;光电探测器。

教育经历

学术贡献

  • 1. Yao Li, Xiaogang Chen, Jun Lan, et al. High performance ternary organic photomultiplication detectors based on non-fullerene acceptor ITIC[J]. Sensors and Actuators: A. Physical, 2024, 379:115958
  • 2. 李尧, 王奋强, 王爱玲, 蓝俊, 刘虎, 刘良朋, 张鹏杰, 吴回州, 牛瑞霞, 张栩莹. 基于双给体三元体异质结的高性能倍增型有机光电探测器[J]. 光子学报, 2024, 53(3):0304001.
  • 3. 李尧, 陈晓刚, 苟恒璐, 谌利欢. 光敏有机场效应管光生载流子浓度估算研究. 激光与光电子学进展, 2025, 62(7):0723001.
  • 4. 李尧, 王奋强, 王爱玲, 蓝俊, 刘良朋,吴回州,张鹏杰. 有机薄膜晶体管陷阱态密度检测研究进展[J]. 激光与光电子学进展, 2024, 61(13):55-67.
  • 5. 李尧, 牛瑞霞, 王爱玲, 王奋强, 蓝俊, 张栩莹, 张鹏杰, 刘良朋, 吴回州. 1000 V 4H-SiC VDMOS结构设计与特性研究[J]. 半导体光电, 2024, 45(03):378-383.
  • 6. 李尧,张栩莹,王爱玲,牛瑞霞, 王奋强, 蓝俊, 张鹏杰, 刘良朋, 吴回州. AlGaN/GaN异质结HEMT电学特性仿真研究[J]. 现代电子技术, 2024, 47(16):23-27.
  • 7. 李尧, 蓝俊, 王奋强, 王爱玲, 牛瑞霞, 刘良鹏, 张鹏杰, 吴回州, 张栩莹, 宽带和窄带有机光电倍增探测器研究进展[J]. 半导体光电, 2024, 45(1):3-18.
  • 8. 吴回州, 李尧, 卢启海, 刘良朋, 宋玉哲. 基于Ansys Maxwell巨磁阻隔离器结构中线圈磁场的研究[J]. 传感器与微系统, 2024, 43(08):64-67.
  • 9. 李尧, 王爱玲, 王奋强, 蓝俊, 牛瑞霞, 张鹏杰, 张栩莹, 吴回州, 刘良鹏. 3200V双p阱终端VDMOS击穿特性仿真研究[J]. 半导体光电, 2023, 44(6):837-844.
  • 10. Li Yao, Wang F, et al. Modification of Schottky barrier height for NiFe/p-Si contacts by inserting an ultra-thin HfO2 dielectric layer[J]. Materials Letters, 2023, 333:133657.
  • 11. Li Yao, Pan M, et al. An External Quantum Efficiency Model of Organic Phototransistors Excluding Photocurrent Amplification Effect[J]. Physica Status Solidi-Rapid Research Letters, 2021, 2100316.
  • 12. Li Yao, Pan M, Hu Y, et al. The influence of substrate temperature on the near-infrared absorption and carrier mobility of lead phthalocyanine phototransistors[J]. Thin Solid Films, 2021, 718:138481.
  • 13. Li Yao, Lv W, et al. Enhanced performance of PbPc photosensitive organic field effect transistors by inserting different-thickness pentacene inducing layers[J]. Organic Electronics, 2015, 26:186-190.
  • 14. Li Yao, Zhang J, et al. Substrate temperature dependent performance of near infrared photoresponsive organic field effect transistors based on lead phthalocyanine[J]. Synthetic Metals, 2015, 205:190-194.
  • 15. Yao Li, Lv W, et al. Enhanced performance of isotype planar heterojunction photoresponsive organic field-effect transistors by using Ag source-drain electrodes[J]. Europhysics Letters, 2015, 110:17006.
  • 16. Li Yao, Ci Z, et al. Photoluminescent and thermal properties of (Sr0.995-x-y-zCaxBayMgz)2SiO4: 0.01Eu2+ phosphors for white light-emitting diodes[J]. Materials Research Bulletin, 2014, 61:146-151.
  • 17. Li Yao, Li H, et al. Warm-White-Light Emission from Eu2+/Mn2+-Coactivated NaSrPO4 Phosphor through Energy Transfer[J]. Journal of Physics and Chemistry of Solids, 2013, 74:175-180.
  • 18. Zhou Maoqing, Li Yao, et al. Near Infrared Photoresponsive Organic Field-effect Transistors by Utilizing Pentacene/Lead Phthalocyanine Heterojunction[J]. Chinese Journal of Luminescence, 2014, 35:342-348.
  • 19. Luo Xiao, Li Yao, et al. Position-dependent performance of copper phthalocyanine based field-effect transistors by gold nanoparticles modification[J]. Nanotechnology, 2015, 26:035201.
  • 20. Sun Lei, Li Yao, et al. Towards ultrahigh red light responsive organic field-effect transistors utilizing neodymium phthalocyanine as light sensitive material[J]. IEEE Transactions on Electron Devices, 2016, 63:452-458.
  • 21. Zhang Jiangping, Li Yao, et al. Airstable near-infrared sensitive organic field-effect transistors utilizing erbium phthalocyanine as photosensitive layer[J]. Synthetic Metals, 2016, 218:27-33.

工作经历