张立瑶照片

张立瑶副教授物理学院硕士生导师

研究方向:半导体光电材料;光电子器件;纳米光子学

办公室:卓越楼 806 室 邮箱:lyzhang@usst.edu.cn 更新时间:2026-06-02

Zhang LiyaoAssociate ProfessorSchool of PhysicsMaster's Supervisor

Research: Semiconductor optoelectronic materials; optoelectronic devices; nanophotonics, etc.

Office: Room 806, Zhuoyue Building | Email: lyzhang@usst.edu.cn | Last updated: 2026-06-02

教育背景与工作经历

教育背景

  • 2004 年 - 2008 年 华中科技大学光信息科学与技术专业本科
  • 2008 年 - 2013 年 中国科学院上海技术物理研究所微电子与信息电子学专业博士

工作经历

  • 2017 年 - 至今 上海理工大学副教授
  • 2017 年 Eindhoven University of Technology 访问学者
  • 2015 年 - 2017 年 中国科学院上海微系统与信息技术研究所博士后
  • 2015 年 中国电子科技集团第五十五研究所工程师
  • 2013 年 - 2014 年 中国科学院上海微系统与信息技术研究所助理研究员

科研项目

  • 1. 国家自然科学基金青年项目,主持
  • 2. 上海市扬帆人才计划,主持
  • 3. 中国科学院信息功能材料国家重点实验室开放课题,主持
  • 4. 参与 1 项 973 项目及 1 项国家自然科学基金重点项目

代表性论著

  • 1. Zhang Xinyu, Long Weiwei, Zhang LiYao. Effect of Annealing on the Optical Properties of Gallium Oxide Thin Films. Physics of the Solid State, 2026, 68: 427-436.
  • 2. Hou Fangzhong, Zhang LiYao. AlGaN-based Avalanche Photodiodes with a Graded Al Composition Multiplication Layer. Semiconductors, 2026, 60: 404-409.
  • 3. Cao YouXiang, Zhang LiYao. GaSbBi Quantum Wells for Mid-Infrared Lasers. Physics of the Solid State, 2025, 4: 67.
  • 4. Zhang LiYao, Ma Ding, Zhang XinYi, Tu JianJun. InGaAsBi Quantum Well Lasers on InP for Mid-infrared Lasers. Semiconductors, 2025, 2: 59.
  • 5. Zhang LiYao, Dai JinMeng. Ge1-xSnx/Si(1-y)Sny SLs lattice-matched to Ge for 1.55 um lasers. Physics Letters A, 2023, 466: 128726.
  • 6. Zhang LiYao, Yao Shuang, Yu Peng, Feng Duo, Dai JinMeng, Cao YouXiang. Research on structural properties and optical properties of InPBi thin film materials. Semiconductor Optoelectronics, 2023, 43(4): 626-630.
  • 7. Feng Duo, Zhang LiYao, Dai JinMeng, Cao YouXiang. Wavelength extended InGaAsBi near infrared photodetector. Journal of Infrared and Millimeter Waves, 2023, 42(4): 468-475.
  • 8. Zhang LiYao, Yu Peng, Yao Shuang, Feng Duo, Dai JinMeng. Direct bandgap type-I Ge quantum dots/GeSnSi for SWIR and MWIR lasers. Electronic Materials Letters, 2022, 18(1): 87-93.
  • 9. Zhang MingXuan, Zhang LiYao. GaAsBi Quantum Dots for 1.55 mu m Laser Diode. Electronic Materials Letters, 2021, 17(2): 181-187.
  • 10. Zhang ZhongYue, Zhang LiYao. Type-II GaAsBi QDs/GaSb for middle-wave and long-wave infrared lasers. Quantum Electronics, 2021, 51(3): 201-205.
  • 11. Zhang ZhongYue, Zhang LiYao. Research on indoor ultraviolet light scattering characteristics. Optical Technology, 2021, 47(03): 327-333.
  • 12. Zhang LiYao. Discussion on the online teaching model and effectiveness of university physics during the COVID-19 epidemic. Scientific Consulting (Education and Research), 2021, 14(04): 197-198.

主讲课程

  • 大学物理 A(1);大学物理 A(2);电磁学;发光学与发光材料;半导体照明原理;第一外语(专业英语)

Education & Work Experience

Education

  • 2004 - 2008, Undergraduate study in Optical Information Science and Technology, Huazhong University of Science and Technology.
  • 2008 - 2013, Ph.D. in Microelectronics and Information Electronics, Shanghai Institute of Technical Physics, Chinese Academy of Sciences.

Work Experience

  • 2017 - present, Associate Professor, University of Shanghai for Science and Technology.
  • 2017, Visiting Scholar, Eindhoven University of Technology, the Netherlands.
  • 2015 - 2017, Postdoctoral Researcher, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences.
  • 2015, Engineer, The 55th Research Institute of China Electronics Technology Group Corporation.
  • 2013 - 2014, Assistant Researcher, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences.

Research Projects

  • 1. National Natural Science Foundation of China Young Scientists Fund project, Principal Investigator.
  • 2. Shanghai Sailing Program, Principal Investigator.
  • 3. Open Project of the State Key Laboratory of Information Functional Materials, Chinese Academy of Sciences, Principal Investigator.
  • 4. Participant in one 973 Program project and one NSFC Key Program project.

Selected Publications

  • 1. Zhang Xinyu, Long Weiwei, Zhang LiYao. Effect of Annealing on the Optical Properties of Gallium Oxide Thin Films. Physics of the Solid State, 2026, 68: 427-436.
  • 2. Hou Fangzhong, Zhang LiYao. AlGaN-based Avalanche Photodiodes with a Graded Al Composition Multiplication Layer. Semiconductors, 2026, 60: 404-409.
  • 3. Cao YouXiang, Zhang LiYao. GaSbBi Quantum Wells for Mid-Infrared Lasers. Physics of the Solid State, 2025, 4: 67.
  • 4. Zhang LiYao, Ma Ding, Zhang XinYi, Tu JianJun. InGaAsBi Quantum Well Lasers on InP for Mid-infrared Lasers. Semiconductors, 2025, 2: 59.
  • 5. Zhang LiYao, Dai JinMeng. Ge1-xSnx/Si(1-y)Sny SLs lattice-matched to Ge for 1.55 um lasers. Physics Letters A, 2023, 466: 128726.
  • 6. Zhang LiYao, Yao Shuang, Yu Peng, Feng Duo, Dai JinMeng, Cao YouXiang. Research on structural properties and optical properties of InPBi thin film materials. Semiconductor Optoelectronics, 2023, 43(4): 626-630.
  • 7. Feng Duo, Zhang LiYao, Dai JinMeng, Cao YouXiang. Wavelength extended InGaAsBi near infrared photodetector. Journal of Infrared and Millimeter Waves, 2023, 42(4): 468-475.
  • 8. Zhang LiYao, Yu Peng, Yao Shuang, Feng Duo, Dai JinMeng. Direct bandgap type-I Ge quantum dots/GeSnSi for SWIR and MWIR lasers. Electronic Materials Letters, 2022, 18(1): 87-93.
  • 9. Zhang MingXuan, Zhang LiYao. GaAsBi Quantum Dots for 1.55 mu m Laser Diode. Electronic Materials Letters, 2021, 17(2): 181-187.
  • 10. Zhang ZhongYue, Zhang LiYao. Type-II GaAsBi QDs/GaSb for middle-wave and long-wave infrared lasers. Quantum Electronics, 2021, 51(3): 201-205.
  • 11. Zhang ZhongYue, Zhang LiYao. Research on indoor ultraviolet light scattering characteristics. Optical Technology, 2021, 47(03): 327-333.
  • 12. Zhang LiYao. Discussion on the online teaching model and effectiveness of university physics during the COVID-19 epidemic. Scientific Consulting (Education and Research), 2021, 14(04): 197-198.

Courses

  • College Physics A(1); College Physics A(2); Electromagnetism; Luminescence and Luminescent Materials; Principles of Semiconductor Lighting; First Foreign Language (Professional English).