田伟照片

田伟副教授物理学院硕士生导师

研究方向:高性能有色金属材料(高熵合金、镁合金、铜合金等)的研究与开发;高性能环境功能材料的研究与开发(含污染物光催化降解去除与测试(气和水))。

办公室:卓越楼 806 室 邮箱:tianwei@usst.edu.cn 更新时间:2026-06-12

Tian WeiAssociate ProfessorSchool of PhysicsMaster's Supervisor

Research: Research and development of high-performance non-ferrous metal materials (high-entropy alloys; magnesium alloys; copper alloys, etc.); including alloy design

Office: Room 806, Zhuoyue Building | Email: tianwei@usst.edu.cn | Last updated: 2026-06-12

教育背景与工作经历

教育背景

  • 1997-2002 河北师范大学,本科
  • 2004-2007 上海理工大学,硕士研究生
  • 2010-2013 上海理工大学,博士研究生

工作经历

  • 2013-至今 上海理工大学,教师
  • 2016-2017 美国 Colorado University,访问学者

科研项目

  • 1. 主持“区域光纤通信网与新型光通信系统国家重点实验室”课题:基于电磁诱导透明固态介质传输的相干光学图像研究
  • 2. 主持横向课题:量子通讯和量子计算中的光子输运算法开发与技术服务
  • 3. 主持横向课题:高强 Al-Zn-Cu 系合金的研究与技术服务
  • 4. 横向项目(技术服务):高精度电磁感应加热辊,主持,经费 45 万元,2024.12-2026.12

代表性论著

  • *为通讯作者 / * indicates corresponding author
  • 1. Chen Xiaohong, Lu Qingqing, Gao Yuhang, Tian Wei*, et al. Bidirectional improvement of strength and ductility of CoCrFeNiTi (Co40Cr16Fe35Ni8Ti1) high-entropy alloys suitable for coronary stents. Journal of Materials Research and Technology-JMR&T, 2022, 18.
  • 2. Lu Qingqing, Chen Xiaohong, Tian Wei*, et al. Corrosion behavior of a non-equiatomic CoCrFeNiTi high-entropy alloy: A comparison with 304 stainless steel in simulated body fluids. Journal of Alloys and Compounds, 2022, 897: 163036.
  • 3. Wenhao Bai, Fei Chang, Kaiwen Li, Yujie Kou, Wei Tian*. High-Entropy Materials for Photocatalysis: A Mini Review. Catalysts, 2026, 15(12).
  • 4. Liu YJ, Chen XH, Liu Y, Tian W*, et al. Effects of Annealing Temperature on Interfacial Structure and Thermal Conductivity of Hot-Pressed Copper/Cr-Coated Diamond Composites. Materials, 2026, 19(8).
  • 5. Bai WH, Chang F, Fan XH, Tian W. Facile Fabrication of Carbon Paper-Supported Fe Catalyst Under Pulse Laser Irradiation for Degradation of Rhodamine B. Nanomaterials, 2026, 16(5).
  • 6. Mao-Yuan Wan, et al. Absorption and scattering of a high dimensional non-commutative black hole. European Physical Journal C, 2023, 83(1): 1-12.
  • 7. Mao-Yuan Wan, et al. Absorption and scattering of massless scalar wave from Regular Black Holes. General Relativity and Gravitation, 2023, 54(11): 1-14.
  • 8. Wei Tian, Fuwei Zhang, Shengli Han, et al. Analysis of Microstructure and Properties in Cold Rotary Swaged Copper-Clad Magnesium Wires. Metals, 2023, 13(3): 467.
  • 9. Wei Tian, Pengfei Gao, Shengli Han, et al. Effect of Nano-Ti Particles on Microstructure and Mechanical Properties of Mg-3Al-1Zn Matrix Composites. Materials, 2023, 16(6): 2407.
  • 10. Wei Tian, Mengnan Hu, Xiaohong Chen, et al. Effect of Ce addition on microstructure, mechanical properties and corrosion behavior of Al-Cu-Mn-Mg-Fe alloy. Materials Research Express, 2020, 7.
  • 11. Tian Wei, Bi Liming, Ma Fengcang, et al. Effect of Zr on as-cast microstructure and properties of Cu-Cr alloy. Vacuum, 2018, 149.
  • 12. Tian Wei, Liu Yifang, Bi Liming, et al. Effect of Zr on Microstructure and Properties of Cu-Cr Alloy. Rare Metal Materials and Engineering, 2018, 47(2).
  • 13. Tian Wei, Bi Li-ming, et al. Effect of Zr on microstructure and properties of Cu-15Cr alloy. Journal of Central South University, 2017, 24(12).
  • 14. Tian Wei, Bi Liming, Du Jiandi, et al. Microstructure Evolution and Thermal Stability of Cu-15Cr in-situ Composites. Journal of Wuhan University of Technology-Materials Science Edition, 2018, 33(1).
  • 15. Jiang Zhong-Lin, Tian Wei, Kou Zhi-Qi, et al. The influence of the mixed host emitting layer based on the TCTA and TPBi in blue phosphorescent OLED. Optics Communications, 2016, 372.
  • 16. Wei Tian, Bin Chen, Guang Tong. Controlling Single-photon Transport in a One-dimensional Resonator Waveguide by Interatomic Dipole-dipole Interaction. International Journal of Modern Physics B, 2012, 26(32).
  • 17. Wei Tian, Bin Chen, WeiDong Xu. Controlling Single-photon Transport along Optical Waveguide by a Three-level Atom. Chinese Physics Letters, 2012, 29(3).
  • 18. Tian Wei, Sun Yue, Bi Li-ming, et al. Microstructure evolution and tensile strength of fiber-reinforced Cu-Cr-Zr alloy. Transactions of Materials and Heat Treatment, 2018, 39(2). EI.
  • 19. Guang Tong, Xiaoxiong Jin, Wei Tian, et al. Simulation Investigation of Factors Affecting Tire Noise. International Journal of Advancements in Computing Technology. EI.
  • 20. Wei Tian. A Study about Single-photon Transport Controlled by Dipole-dipole Interaction in a One-dimensional Coupled Waveguide Cavity. Applied Mechanics and Materials, 2014. EI.
  • 21. Wei Tian. A Study about Single-photon Transport Controlled by the Three-level Atom in the Optical Waveguide Cavity. Applied Mechanics and Materials, 2014. EI.

主讲课程

  • 《大学物理》

荣誉、学术兼职与社会服务

荣誉与社会服务

  • 1. 第二届上海高校青年教师教学竞赛二等奖(上海市教育委员会)。
  • 2. 全国高等学校物理基础课程青年教师讲课比赛上海市特等奖(教育部教指委)。
  • 3. 全国高等学校物理基础课程青年教师讲课比赛华东赛区一等奖(教育部教指委)。
  • 4. 全国高等学校物理基础课程青年教师讲课比赛全国二等奖(教育部教指委)。
  • 5. 文汇报以“高校物理讲台上的艺术家——记‘全国高校物理基础课程青年教师讲课比赛获奖教师’田伟”为题,于 2016 年 7 月 6 日“文化”版面报道本人教学事迹。

学术兼职

  • 中国人工智能学会科普工作委员会委员

Education & Work Experience

Education

  • 1997-2002, Hebei Normal University, Undergraduate studies.
  • 2004-2007, University of Shanghai for Science and Technology, Master's student.
  • 2010-2013, University of Shanghai for Science and Technology, Doctoral student.

Work Experience

  • 2013-present, University of Shanghai for Science and Technology, Faculty Member.
  • 2016-2017, Colorado University, USA, Visiting Scholar.

Research Projects

  • 1. Principal Investigator, State Key Laboratory project on regional optical fiber communication networks and new optical communication systems: coherent optical image transmission based on electromagnetically induced transparency in solid media.
  • 2. Principal Investigator, horizontal project: algorithm development and technical services for photon transport in quantum communication and quantum computing.
  • 3. Principal Investigator, horizontal project: research and technical services for high-strength Al-Zn-Cu alloys.
  • 4. Principal Investigator, horizontal technical-service project: high-precision electromagnetic induction heating roller, RMB 450,000, 2024.12-2026.12.

Selected Publications

  • * indicates corresponding author
  • 1. Chen Xiaohong, Lu Qingqing, Gao Yuhang, Tian Wei*, et al. Bidirectional improvement of strength and ductility of CoCrFeNiTi (Co40Cr16Fe35Ni8Ti1) high-entropy alloys suitable for coronary stents. Journal of Materials Research and Technology-JMR&T, 2022, 18.
  • 2. Lu Qingqing, Chen Xiaohong, Tian Wei*, et al. Corrosion behavior of a non-equiatomic CoCrFeNiTi high-entropy alloy: A comparison with 304 stainless steel in simulated body fluids. Journal of Alloys and Compounds, 2022, 897: 163036.
  • 3. Wenhao Bai, Fei Chang, Kaiwen Li, Yujie Kou, Wei Tian*. High-Entropy Materials for Photocatalysis: A Mini Review. Catalysts, 2026, 15(12).
  • 4. Liu YJ, Chen XH, Liu Y, Tian W*, et al. Effects of Annealing Temperature on Interfacial Structure and Thermal Conductivity of Hot-Pressed Copper/Cr-Coated Diamond Composites. Materials, 2026, 19(8).
  • 5. Bai WH, Chang F, Fan XH, Tian W. Facile Fabrication of Carbon Paper-Supported Fe Catalyst Under Pulse Laser Irradiation for Degradation of Rhodamine B. Nanomaterials, 2026, 16(5).
  • 6. Mao-Yuan Wan, et al. Absorption and scattering of a high dimensional non-commutative black hole. European Physical Journal C, 2023, 83(1): 1-12.
  • 7. Mao-Yuan Wan, et al. Absorption and scattering of massless scalar wave from Regular Black Holes. General Relativity and Gravitation, 2023, 54(11): 1-14.
  • 8. Wei Tian, Fuwei Zhang, Shengli Han, et al. Analysis of Microstructure and Properties in Cold Rotary Swaged Copper-Clad Magnesium Wires. Metals, 2023, 13(3): 467.
  • 9. Wei Tian, Pengfei Gao, Shengli Han, et al. Effect of Nano-Ti Particles on Microstructure and Mechanical Properties of Mg-3Al-1Zn Matrix Composites. Materials, 2023, 16(6): 2407.
  • 10. Wei Tian, Mengnan Hu, Xiaohong Chen, et al. Effect of Ce addition on microstructure, mechanical properties and corrosion behavior of Al-Cu-Mn-Mg-Fe alloy. Materials Research Express, 2020, 7.
  • 11. Tian Wei, Bi Liming, Ma Fengcang, et al. Effect of Zr on as-cast microstructure and properties of Cu-Cr alloy. Vacuum, 2018, 149.
  • 12. Tian Wei, Liu Yifang, Bi Liming, et al. Effect of Zr on Microstructure and Properties of Cu-Cr Alloy. Rare Metal Materials and Engineering, 2018, 47(2).
  • 13. Tian Wei, Bi Li-ming, et al. Effect of Zr on microstructure and properties of Cu-15Cr alloy. Journal of Central South University, 2017, 24(12).
  • 14. Tian Wei, Bi Liming, Du Jiandi, et al. Microstructure Evolution and Thermal Stability of Cu-15Cr in-situ Composites. Journal of Wuhan University of Technology-Materials Science Edition, 2018, 33(1).
  • 15. Jiang Zhong-Lin, Tian Wei, Kou Zhi-Qi, et al. The influence of the mixed host emitting layer based on the TCTA and TPBi in blue phosphorescent OLED. Optics Communications, 2016, 372.
  • 16. Wei Tian, Bin Chen, Guang Tong. Controlling Single-photon Transport in a One-dimensional Resonator Waveguide by Interatomic Dipole-dipole Interaction. International Journal of Modern Physics B, 2012, 26(32).
  • 17. Wei Tian, Bin Chen, WeiDong Xu. Controlling Single-photon Transport along Optical Waveguide by a Three-level Atom. Chinese Physics Letters, 2012, 29(3).
  • 18. Tian Wei, Sun Yue, Bi Li-ming, et al. Microstructure evolution and tensile strength of fiber-reinforced Cu-Cr-Zr alloy. Transactions of Materials and Heat Treatment, 2018, 39(2). EI.
  • 19. Guang Tong, Xiaoxiong Jin, Wei Tian, et al. Simulation Investigation of Factors Affecting Tire Noise. International Journal of Advancements in Computing Technology. EI.
  • 20. Wei Tian. A Study about Single-photon Transport Controlled by Dipole-dipole Interaction in a One-dimensional Coupled Waveguide Cavity. Applied Mechanics and Materials, 2014. EI.
  • 21. Wei Tian. A Study about Single-photon Transport Controlled by the Three-level Atom in the Optical Waveguide Cavity. Applied Mechanics and Materials, 2014. EI.

Courses

  • "College Physics"

Honors, Academic Service and Social Service

Honors and Service

  • 1. Second Prize, The Second Shanghai College Young Teacher Teaching Competition, Shanghai Municipal Education Commission.
  • 2. Shanghai Special Prize, National College Physics Basic Course Young Teacher Lecture Competition, Teaching Instruction Committee of the Ministry of Education.
  • 3. First Prize in East China Division, National College Physics Basic Course Young Teacher Lecture Competition, Teaching Instruction Committee of the Ministry of Education.
  • 4. National Second Prize, National College Physics Basic Course Young Teacher Lecture Competition, Teaching Instruction Committee of the Ministry of Education.
  • 5. Featured by Wenhui Daily on the "Culture" page on July 6, 2016 for teaching excellence.

Academic Service

  • Member, Science Popularization Working Committee, Chinese Association for Artificial Intelligence.