北京交通大学硕士研究生导师信息:祝熙翔
2026-07-23 17:29:00来源: 网络
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在读研期间,所有与你读研相关的事情,可能都需要经过你的导师同意,所以说,选择导师真的很重要,也希望大家能够认真对待这件事,怎样才能选择适合自己的导师呢?这就要我们提前做足功课,尽可能多的搜集有关你准备报考的导师的信息,下面新东方在线考研频道为大家分享:“北京交通大学硕士研究生导师信息:祝熙翔”文章。
祝熙翔
博士 、副教授
基本信息
办公电话:010-51682957电子邮件: xxzhu@bjtu.edu.cn
通讯地址:No.3 Shangyuancun Haidian District邮编:
教育背景
2013.9-2015.6 北京交通大学 光学工程 硕士
2016.9-2020.9 北京交通大学 光学工程 博士
2018.10-2020.7 美国田纳西大学 The University of Tennessee 材料与工程(MSE)
工作经历
2020.12-2022.11 北京交通大学 博士后 信息与通信工程
研究方向
有机光电子材料与器件
光电信息工程
招生专业
光学工程硕士
光电信息工程硕士
光学工程博士
光电信息工程博士
科研项目
国家(工信部等)专项: 面向光电子器件的15MeV超高能离子注入工艺及关键设备, 2025-2028
自然科学类人才基金项目: 逐层制备工艺在光电器件的应用探索与研究, 2026-2028
国家自然科学基金“面上”: 构筑高性能准双层有机光伏器件及其关键科学问题的研究, 2026-2029
自然科学横向项目: 半导体薄膜掺杂工艺及机理应用研究, 2025-2026
自然科学横向项目(科技园): 阵列化倍增型有机光电探测器的研制及应用, 2024-2026
重点资助项目: 有机半透明太阳能电池制备及自旋动力学研究, 2023-2026
国家自然科学基金"青年基金": 探究高效率非富勒烯有机光伏器件的工作机理与材料结构在性能提升中的应用, 2022-2024
国家自然科学基金“面上”: 高效率半透明有机光伏器件及关键科学问题研究, 2022-2025
其它(科技处): 面向应用的低功耗上转换发光二维钙钛矿薄膜的制备及机理研究, 2021-2022
基础研究项目: 高效率非富勒烯有机光伏器件的机理研究, 2021-2023
教学工作
薄膜制备与表征技术(研究生)
太阳能电池原理(本科)
大学物理实验
科技论文写作能力培养
论文/期刊
在TOP期刊发表的SCI论文(按时间正序排列):
1. Zhu X, Zhang G, Zhang J, et al. Self-stimulated dissociation in non-fullerene organic bulk-heterojunction solar cells[J]. Joule, 2020, 4(11): 2443-2457.[Top 期刊]
2. Zhang J, Zhu X, Wang M, et al. Establishing charge-transfer excitons in 2D perovskite heterostructures[J]. Nature Communications, 2020, 11(1): 2618.[Top 期刊]
3. Zhu X, Xu H, Liu Y, et al. Two‐Photon Up‐Conversion Photoluminescence Realized through Spatially Extended Gap States in Quasi‐2D Perovskite Films[J]. Advanced Materials, 2019, 31(49): 1901240.[Top 期刊]
4. Zhang K, Zhao J, Hu Q, Yang S, Zhu X, et al. Room‐Temperature Magnetic Field Effect on Excitonic Photoluminescence in Perovskite Nanocrystals[J]. Advanced Materials, 2021, 33(30): 2008225.[Top 期刊]
5. Xie Y, Zhou C, Ma X, Jeong S Y, Woo H Y, Huang F, Yang Y, Yu H, Li J, Zhang F, Wang K, Zhu X*, High-Reproducibility Layer-by-Layer Non-Fullerene Organic Photovoltaics with 19.18% Efficiency Enabled by Vacuum-Assisted Molecular Drift Treatment [J]. Advanced Energy Materials, 2024, 2400013. [TOP 期刊,此文入选期刊封面文章]
6. Tian H, Zhou H, ...Zhu X*,Ma X*,and Zhang FJ* et al, Over 19.2% Efficiency of Layer-By-Layer Organic Photovoltaics by Ameliorating Exciton Dissociation and Charge Transport[J]. Advanced Functional Materials, 2025, 2422867. [TOP 期刊]
7. Zhang, Lu, Zhu X*,Ma X*,Woo HY*,and Zhang FJ* et al. Cascaded Energy and Charge Transfer Synergistically Prompting 18.7% Efficiency of Layered Organic Solar Cells with 1.48 eV Bandgap[J] Advanced Energy Materials: 2025,2404718. [TOP 期刊]
8. X YJ,...Zhu X* , Shi YM* and AW Tang* et al. Machine-learning assisted filterless color imaging with donor–acceptor ratio engineered self-driven organic photodetectors[J] Nano Research, 2026,19, 94908382. [TOP 期刊]
9. Q HF, H Peng (本科生共同第一作者),Ma X*,Zhuo ZL*, Zhang FJ* and Zhu X* et al. Ultrathin Quasi-2D Perovskite-Organic Segregated-Structure Coupling for High-Performance Narrowband Photomultiplication Detectors[J] Advanced Science: 2026,0:e75123. [TOP 期刊]
10. X WC, GJ Lai (本科生共同第一作者),and Zhu X * et al. Boosting the Efficiency of Layer-by-Layer Organic Photovoltaic to Over 19% via TADF-Mediated Exciton Utilization and Dissociation[J] Advanced Functional Materials: 2026; 0:e76255. [TOP 期刊]
发表的SCI论文 (按时间倒序排列):
32. Li JC,... Zhang Fj* and Zhu X*, et al. Multifunctional Benzene-Based Solid Additive for Synergistically Boosting Efficiency and Stability inLayer-by-Layer Organic Photovoltaics[J]. Energies, 2026, 19,211.
31. Xie Y, ... Zhu X* et al., Improving the Efficiency of Layer-by-Layer Organic Photovoltaics to Exceed 19% by Establishing Effective Donor−Acceptor Interfacial Molecular Interactions[J]. ACS Applied Materials & Interfaces, 2025, doi.org/10.1021/acsami.5c01195
30. Zhou H, Zhang L,... Zhu X*,Ma X*,Lu F.*,and Zhang FJ* et al. Layered All-Polymer Solar Cells with Efficiency of 18.34% by Employing Alloyed Polymer Donors. Small. 2025, 2410581.
29. Zhang Q, Lei S, Hu C, Zhu X et al. Defect‐Induced Rashba Effect in Metal Halide Perovskite Thin Films Deposited on a Flexible Substrate[J]. Advanced Optical Materials, 2024, 12(10): 2302238.
28. Hu J, Kan L, Xie Y, Zhu X et al. Exploring photoexcited spin states for fullerene-derivatives based organic bulk heterojunction solar cells using magneto-photocurrent, Applied Physics Letters, 2024, 124, 083502.
27. Tang J, Pan J, Han J, Liu Z, Zhou S, Zhu X et al. Tetrafluoride anion substitution and its role on performance enhancement in quasi-2D perovskite light-emitting diode, Oragnic Electronics 123(26), 107003.
26. Tang J, Zhang G, Wang C, Deng L, Zhu X et al. Investigation of the Role of K 2 SO 4 Electrolyte in Hole Transport Layer for Efficient Quasi-2D Perovskite Light-Emitting Diodes, The Journal of Physical Chemistry Letters, 2024, 15(4),1112-1120.
25. Xie Y, Zhang J*, Yu H, Li J, Wang K, Zhu X*, Broad Two-Photon Up-Conversion Photoluminescence Realized by Locally Polarized Heterostructures in 2D Perovskite, The Journal of Physical Chemistry C, 2023,doi.org/10.1021/acs.jpcc.3c05604
24. 祝熙翔*,胡斌,利用磁⁃光⁃电综合手段解析有机与钙钛矿材料的激发态动力学过程:实现跨学科交叉研究,《发光学报》,2023, 44(7): 1287-1299 【EI,CSCD,Scopus, 中文核心期刊】
23. Tao S, Kan L, Li Y, Zhang X, Xie Y, Tang J, Zhu X et al. Impact of Bychkov–Rashba Spin Splitting on Dual Emissions for Lead Halide Perovskite Nanowires[J]. The Journal of Physical Chemistry Letters, 2023, 14(34): 7751-7758.
22. Huang F, Xie Y, Li H, Li Y, Wang K, Zhu X*, Enhanced Self-Stimulated Dissociation in Non-fullerene Layer-by-Layer Organic Solar Cells through Superimposed and Oriented Dipolar Polarization, The Journal of Physical Chemistry C, 2023,127 (26), 12779-12787
21. Xu W, Zhang M, Ma X, Zhu X, et al. Over 17.4% Efficiency of Layer‐by‐Layer All‐Polymer Solar Cells by Improving Exciton Utilization in Acceptor Layer[J]. Advanced Functional Materials, 2023: 2215204.
20. Zhao Z, Xu C, Ma Y, Ma X, Zhu X, et al. Filter‐Free Narrowband Photomultiplication‐Type Planar Heterojunction Organic Photodetectors[J]. Advanced Functional Materials, 2022: 2212149.
19. Zhao Z, Xu C, Ma Y, Yang K, Liu M, Zhu X, et al. Ultraviolet narrowband photomultiplication type organic photodetectors with Fabry− Pérot resonator architecture[J]. Advanced Functional Materials, 2022, 32(29): 2203606.
18. Xu W, Zhu X, Ma X, et al. Achieving 15.81% and 15.29% efficiency of all-polymer solar cells based on layer-by-layer and bulk heterojunction structures[J]. Journal of Materials Chemistry A, 2022, 10(25): 13492-13499.
17. Zhu X*, Xie Y, Ma X. Achieving Up-Conversion Amplified Spontaneous Emission through Spin Alignment between Coherent Light-Emitting Excitons in Perovskite Microstructures[J]Photonics. 2022, 9(5): 353.
16. Xu C, Jin K, Xiao Z, Zhao Z, Yan Y, Zhu X, et al. Efficient Semitransparent Layer‐by‐Layer Organic Photovoltaics via Optimizing Wide Bandgap and Narrow Absorption Polymer Layer Thickness[J]. Solar RRL, 2022, 6(8): 2200308.
15. Xu W, Li X, Jeong S Y, Son J H, Zhou Z, Jiang Q, Won H Y, Wu Q, Zhu X, et al. Achieving 17.5% efficiency for polymer solar cells via a donor and acceptor layered optimization strategy[J]. Journal of Materials Chemistry C, 2022, 10(14): 5489-5496.
14. Zhu X, Dai S W, Lai Y L, et al. Packing-Shape Effects of Optical Properties in Amplified Spontaneous Emission through Dynamics of Orbit–Orbit Polarization Interaction in Hybrid Perovskite Quantum Dots Based on Self-Assembly[J]. The Journal of Physical Chemistry Letters, 2021, 12(49): 11894-11901.
13. Ma X, Tang C, Ma Y, Zhu X, et al. Over 17% efficiency of ternary organic photovoltaics employing two acceptors with an acceptor–donor–acceptor configuration[J]. ACS Applied Materials & Interfaces, 2021, 13(48): 57684-57692.
12. Zhu X, Peng L, Li J, et al. Formation of a Fast Charge Transfer Channel in Quasi-2D Perovskite Solar Cells through External Electric Field Modulation[J]. Energies, 2021, 14(21): 7402.
11. Wang M, Zhang J, Zhu X, et al. Revealing long–range orbit–orbit interaction between coherent light-emitting excitons occurring in amplified spontaneous emission in CsPbBr 3 microstructures[J]. Journal of Materials Chemistry C, 2021, 9(18): 6034-6039.
10. Zhu X, Wang K, He J, et al. Exploring deep and shallow trap states in a non-fullerene acceptor ITIC-based organic bulk heterojunction photovoltaic system[J]. The Journal of Physical Chemistry C, 2019, 123(34): 20691-20697.
9. Liang N, Zhu X, Zheng Z, et al. Tuning charge generation process of rylene imide-based solar cells via chalcogen-atom-annulation[J]. Chemistry of Materials, 2019, 31(10): 3636-3643.
8. Zhao F, Wang K, Duan J, Zhu X, et al. Spin‐Dependent Electron–Hole Recombination and Dissociation in Nonfullerene Acceptor ITIC‐Based Organic Photovoltaic Systems[J]. Solar RRL, 2019, 3(7): 1900063.
7. Han C, Wei Z, Wang K, Han C, Deng L, Zhu X, et al. Effect of surface recombination in high performance white-light CH 3 NH 3 PbI 3 single crystal photodetectors[J]. Optics Express, 2018, 26(20): 26307-26316.
6. Yu H, Zhang Q, Han C, Zhu X, et al. Improving photovoltaic performance of inverted planar structure perovskite solar cells via introducing photogenerated dipoles in the electron transport layer[J]. Organic Electronics, 2018, 63: 137-142.
5. Yang Q, Wang K, Yu H, Zhu X, et al. Surface polarization and recombination in organic-inorganic hybrid perovskite solar cells based on photo-and electrically induced negative capacitance studies[J]. Organic Electronics, 2018, 62: 203-208.
4. Zhu X, Wang K, Zhao F, et al. Revisiting the impact of interfacial transport layers on organic bulk heterojunction systems[J]. ACS Applied Energy Materials, 2018, 1(7): 3457-3468.
3. Han C, Wang K, Zhu X, et al. Unraveling surface and bulk trap states in lead halide perovskite solar cells using impedance spectroscopy[J]. Journal of Physics D: Applied Physics, 2018, 51(9): 095501.
2. Zhu X, An Q, Huang H, et al. Improved efficiency of ternary the blend polymer solar cells by doping a narrow band gap polymer material[J]. Science China Physics, Mechanics & Astronomy, 2015, 58: 1-5.
1. Zhu X, Zhang F, An Q, et al. Effect of solvent additive and ethanol treatment on the performance of PIDTDTQx: PC71BM polymer solar cells[J]. Solar Energy Materials and Solar Cells, 2015, 132: 528-534.
每年招收 光学工程专业 2-3名硕士研究生(学术型);另招收有机和钙钛矿光伏,发光,光探测器件博士和博士后,工作地:北京 or 深圳,待遇丰厚,欢迎加入!
研究方向:
(1)有机光伏、探测器
(2)钙钛矿光伏、发光器件
(3)钙钛矿薄膜发光、激光
(4)有机电子自旋,磁场效应相关
专著/译著
专利
软件著作权
获奖与荣誉
1. 2017年“第17届中国光伏学术大会”优秀论文奖 《能量非均匀分布在有机体异质结太阳能电池中的研究》
2. 2023年指导本科生黄福龙获得第十六届北京市物理实验竞赛一等奖《利用磁-光-电手段原位监测有机光伏器件激子分离过程》
3. 2023年指导本科生黄福龙等三人获得大学生创新创业项目北京市级
4. 2024年指导本科生周春钰等二人获得大学生创新创业项目国家级
5. 2024年获评优秀本科毕设指导教师
6. 2025年所指导硕士,谢永超,获评“优秀毕业生”和“优秀毕业论文”(《准双层有机光伏给/受体界面优化与器件性能提升研究》)
7. 2025年荣获北京交通大学“我最敬爱的老师”称号
8. 2026年指导本科生赖国娟等二人获得大学生创新创业项目校级(结题时以共同一作在SCI TOP期刊发表论文一篇)
9. 2026年指导本科生李俊辰等二人获得大学生创新创业项目北京市级(项目期间,结题前以第一作者身份在SCI 期刊(IF=3.2)发表论文一篇)
10. 2026年指导本科生贺鹏获得大学生创新创业项目国家级
11. 2026年指导本科生贺鹏获批北京市自然科学基金“启研”项目资助
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