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[交流] 香港理工 物理与材料系招收 超快光谱/光电子材料/器件 博士

香港理工大学物理与材料系李明杰课题组 主页 https://ming-jie.wixsite.com/polyu

本组研究方向为 新型材料中的光物理及研究和开发新型低维光电子材料及器件:

PI近年通讯作者文章:

1.        Q. Wei, J. S. Peter, H. Ren, W. Wang, L. Zhou, Q. Liu, S. Ostermann, J. Yin, S. Cai, S. F. Yelin*,  M. Li*, "Chiral superfluorescence from perovskite superlattices at room temperature", Nature 654,  369 (2026)
2.        P. Wang, G. Wang, C. Wang, Q. Wei, Y. Chen, Q. Liu, L. Zhou, H. Ren, J. Peng, L. Zhao, T. Du*, M. Li*, "Low-threshold interlayer exciton multiplication in twisted transition metal dichalcogenides heterobilayers", Light: Sci Appl. 15, 113 (2026)
3.        Q. Wei, B. Tang, Y. Chen, T. Bian, H. Ren, Q. Liu, J. Yin*, A. Rogach*, M. Li*, "Long-Lived Exciton Spin Coherence in Chiral Perovskite Colloidal Quantum Wells", ACS Energy Lett. 10, 6114 (2025)
4.        Y. Chen, Q. Wei, J. Fu, S Lin, H. Ren, Q. Liu, L. Zhou, J. Yin*, M. Li*, "Hot-Electron Extraction from Perovskite Quantum Dots for Photovoltage Enhancement", ACS Energy Lett. 10, 5439 (2025)
5.        X. Zhang, Z. Deng, L. Zhao, P. Wang, C. Wang, L. Zhou, G. Wang, T. Du*, M. Li*, "Anomalous In-plane Anisotropic Harmonic Generation in Few-layer PdSe2", ACS Nano 19, 33557 (2025)
6.        L. Zhou, P. Wang, Y. Zhao, Q. Wei, X. Zhang, L. Zhao, Q. Liu, H. Ren, C. Wang, K. Wang*, M. Li*, "Near-Infrared Vortex Emission from Halide Perovskite via Quasi-Guided-Mode-Coupled Bound State in the Continuum", ACS Photon. (2025)
7.        Q. Liu, H. Ren, Q. Wei, M. Li*, "Multifunctional Chiral Halide Perovskites: Advancing Chiro‐Optics, Chiro‐Optoelectronics, and Spintronics", Adv. Sci. e09155 (2025)
8.        Y. Chen, Q. Wei, S. Yang, T. Zhang, H. Chen, Z. Fu, C. Lu, Z. Liu, Y. Wu*, J. Pan*, M. Li*, Z. Li*, "Tin-Lead-Selenide Nanocrystals for Sensitive Uncooled Mid-Infrared Focal Plane Array Imager with Monolithic Readout Integration", Adv. Mater. 2504225 (2025)
9.        Z. Li, Q. Wei, Y. Wang, C. Tao, Y. Zou, X. Liu, Z. Li, Z. Wu, M. Li*, W. Guo*, G. Li*, W. Xu*, F. Gao*, "Highly bright perovskite light-emitting diodes enabled by retarded Auger recombination", Nat Commun 16, 927 (2025).
10.        C. Wang, Q. Wei, H. Ren, K. L. Wong, Q. Liu, L. Zhou, P. Wang, S. Cai, J. Yin*, M. Li*, "Efficient Gate-tunable Hot-carrier Photocurrent from Perovskite Multiple Quantum Wells", Adv. Mater. 37, 2413839 (2025)
11.        T. A. P. Dela Peña, et al M. Li*, J. Wu*, "Tailoring short-range mobility at donor–acceptor heterointerfaces through small molecules promotes efficient organic solar cells", Energy Environ. Sci., 18, 10164 (2025)
12.        Q. Liu, P. Wang, Q. Wei, L. Zhou, H. Ren, C. Wang, J. Peng, L. Zhao, M. Li*, “Chiral perovskite nanowire optoelectronic synapse for full-stokes polarization-resolved perception and reservoir computing”, Adv. Fun. Mater. 2415551 (2024)
13.        Q. Liu#, Q. Wei#, H. Ren, L. Zhou, Y. Zhou, P. Wang, C. Wang, J. Yin, M. Li*, "Circular polarization-resolved ultraviolet photonic artificial synapse based on chiral perovskite" Nat. Commun. 14, 7179 (2023)
14.        Q. Wei#, H. Ren#, J. Liu, Q. Liu, C. Wang, T. W. Lau, L. Zhou, T. Bian, Y. Zhou, P. Wang, Q. Lei, O. F. Mohammed,* M. Li,* J. Yin*, "Long-Lived Hot Carriers in Two-Dimensional Perovskites: The Role of Alternating Cations in Interlayer Space" ACS Eng. Lett., 8, 4315 (2023)
15.        T. A. P. Dela Peña, R. Ma*, et al, G. Li*, M. Li*, J. Wu*, "Manipulating the Charge Carriers Through Functionally Bridged Components Advances Low‐Cost Organic Solar Cells with Green Solvent Processing", Adv. Eng. Mater. 2303369 (2023)
16.        T. A. P. Dela Peña, R. Ma*, et al, G. Li*, M. Li*, J. Wu*, "Interface Property-Functionality Interplay: Suppresses Bimolecular Recombination Facilitating Above 18% Efficiency Organic Solar Cells Embracing Simplistic Fabrication", Energy Environ. Sci, 16, 3416 (2023)
17.        C. Wang, J. Fu, Q. Wei, H. Ren, Q. Liu, L. Zhou, P. Wang, M. Li* "Electric-Field-Enhanced Electroluminescence Color Tuning of Colloidal Type-II Tetrapods", Nano Lett. 23, 5705 (2023).
18.        H. Wei#, Q. Wei#, F. Fang#, G. Xiang, B. Tong, C. Wang, B. Sun, X. Zhao, M. Li*, X. W. Sun*, Y. Gao* "Blue Lasing from Heavy-metal-free Colloidal Quantum Dots", Laser Photonics Rev. 17, 2200557 (2023)
19.        G. Wang, T. Liu, B. Wang, H. Gu, Q. Wei, Z. Zhang, J. He*, M. Li*, G. Xing*, "Hot-carrier tunable abnormal nonlinear absorption conversion in quasi-2D perovskite", Nat. Commun. 13, 6935 (2022).
20.        Y. Chen, J.Yin, Q.Wei, C. Wang, X. Wang, H. Ren, S. F. Yu, O. Bakr, O. Mohammed*, M. Li*, “Multiple Exciton Generation in Tin–Lead Halide Perovskite Nanocrystals for Photocurrent Quantum Efficiency Enhancement”, Nat. Photon. 16, 485 (2022)
21.        Q. Wei, J. Yin, O. M. Bakr, Z, Wang, C. Wang, O. F. Mohammed*, M. Li*, G. Xing*, “Effect of Zinc‐doping on the Reduction of the Hot‐carrier Cooling Rate in Halide Perovskites”, Angew. Chem. Int. Ed., 60, 10957 (2021)
22.        J. Guo, T. Liu, M. Li*, C. Liang, K. Wang, G. Hong, G. Long, S-F. Yu, T-W. Lee, W. Huang, G. Xing*, "Ultrashort Laser Pulse Doubling by Metal-Halide Perovskite Multiple Quantum Wells", Nat. Commun., 11, 3361 (2020)


https://scholar.google.com.hk/schhp?hl=en&as_sdt=0,5&inst=10434768688823972643&inst=17644838422235682599&inst=569367360547434339

欢迎有如下相关研究经历者

1. 半导体材料载流子/自旋动力学,光致激光 超荧光(superfluorescence),非线性光学等;

2.  钙钛矿材料制备 (量子点,单晶,手性钙钛矿,超晶格等) 光电器件(光探等);

3.  二维材料及其光电器件的制备及光电测试;

已具备的主要实验条件:一系列先进的飞秒激光(UV-MIR)光谱测试设备(streak camera/TRPL, transient absorption,  transient absorption imaging, optical pump-thz probe, Thz emissioin等);量子点合成、cvd反应装置/二维材料转移平台/钙钛矿材料制备手套箱等;光电器件制备及测试平台

博士入学申请时间:
1月春季入学:入学前一年1月1日--9月30日
8月秋季入学:入学前一年9月1日--当年5月30日
英语要求:雅思>=6.5, 托福>=80

有意者可联系 PI:  Prof. Li Mingjie,  并附上cv及代表作:ming-jie.li@polyu.edu.hk 谢谢。
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