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  • 李德慧

    李德慧

    李德慧,男,漢族,博士,華中科技大學(xué)教授。


    簡介

    ?2002.9-2006.7 西安交通大學(xué),本科;

    ?2006.9-2009.7 中科院近代物理所,碩士;

    2010.1-2013.9 新加坡南洋理工大學(xué),博士;

    ?Nanyang Technology University, PhD (Advisors: Prof. Qihua Xiong);

    2013.9-至今 美國加州大學(xué)洛杉磯分校,博士后;

    李德慧

    ? University of California, Los Angeles, Postdoctoral Fellow (Advisor: Prof. Xiangfeng Duan);

    ? 2015.11-至今 華中科技大學(xué),教授。

    研究方向

    1. 低維納米材料的光譜學(xué)、光電以及電光性質(zhì)的研究;

    ? 2 .二維層狀材料異質(zhì)結(jié)的光電和電光性質(zhì)的研究;

    ? 3.表面等離子激元與激子的耦合以及能量轉(zhuǎn)移的研究。

    個人榮譽(yù)

    國家優(yōu)秀自費留學(xué)生獎, 2013;

    World Future Foundation PhD Prize in Environmental and Sustainability Research, World Future Foundation,2014。

    代表性論文

    到目前為止已在Nature, Nature Communications,Science Advances,Nano Letters,ACS Nano,等國際頂級學(xué)術(shù)期刊發(fā)表SCI論文40多篇,總被引次數(shù)>900次,H因子17。

    1. D. H. Li, G. M. Wang, H-C Cheng, C-Y Chen, H. Wu, Y. Liu, Y. Huang, X. F. Duan. Size dépendent solid-solid phase transition in methylammonium lead iodide perovskite microplate crystals. Nature Commun.2016. Accepted.

    2.H-C Cheng, G. M. Wang, D. H. Li, Q. Y. He, A. X. Yin, Y. Liu, H. Wu, M. N. Ding, Y. Huang, X. F. Duan. Van der Waals heterojunction devices based on organohalide perovskites and two-dimensional materials. Nano Lett. 2015, 16, 367.

    3.G. M. Wang*, D. H. Li*(共同一作), H-C Cheng, Y. J. Li, C-Y Chen, A. X. Yin, Z. P. Zhao, Z. Y. Lin, H. Wu, Q. Y. He, M. N. Ding, Y. Liu, Y. Huang, X. F. Duan. Wafer-scale growth of large arrays of perovskite microplate crystals for functional electronics and optoelectronics. Science Adv. 2015, 1, e1500613.

    4. D. H. Li,Y. Liu, M. D. L. Meta, C. Magen, J. Arbiol, Y. P. Feng, Q. H. Xiong. Strain induced spatially indirect excition recombination in zinc-blende/wurtzite CdS heterostructures. Nano Res. 2015, 8, 3035.

    5. D. H. Li,R. Cheng, H. L. Zhou, C. Wang, A. X. Yin, Y. Chen, N. O. Weiss, Y. Huang, X. F. Duan. Electric field induced strong enhancement of électroluminescence in multi-layer MoS . Nature commun 2015, 6, 7509.

    6.R. Cheng , D. H. Li,H. L. Zhou, C. Wang, A. X. Yin, S. Jiang, Y. Liu, Y. Chen, Y. Huang, X. F. Duan. Electroluminescence and Photocurrent Generation from Atomically Sharp WSe2/MoS2 Heterojunction p-n Diodes. Nano Lett. 2014, 14, 5590.

    7. D. H. Li,J. Zhang, X. J. Wang, B. L. Huang, Q. H. Xiong. Solid-State Semiconductor Optical Cryocooler Based on CdS Nanobelts. Nano Lett. 2014, 14, 4724.

    8. D. H. Li,J. Zhang, Q. H. Xiong. Laser cooling of CdS nanobelts: Thickness matters. Opt. Express. 2013, 21, 19302.

    9.K. T. Nguyen, D. H. Li, P. Borah, X. Ma, Z. Liu, L. L. Zhu, G. Grüner, Q. H. Xiong and Y. L. Zhao. Photoinduced Charge Transfer within Polyaniline-Encapsulated Quantum Dots Decorated on Graphene. ACS Appl. Mater. Interfaces 2013, 5, 8105.

    10. B. Peng, G. Y. Li, D. H. Li, S. Dodson, Q. Zhang, J. Zhang, Y. H. Lee, H. V. Demir, X. Y. Ling, and Q. H. Xiong. Vertically Aligned Gold Nanorod Monolayer on Arbitrary Substrates: Self-Assembly and Femtomolar Detection of Food Contaminants. ACS Nano.2013, 7, 5993.

    11. J. Zhang*, D. H. Li*(共同一作), R. J. Chen, Q. H. Xiong. Laser cooling of a semiconductor by 40 Kelvin. Nature(Cover). 2013, 493, 504.Highlighted by Nature Photon.7, 348u2013349 ( 2013) and Nature Photon 7, 262 ( 2013)

    12. D. H. Li, J. Zhang, Q. H. Xiong. Surface depletion induced quantum confinement in CdS nanobelts. ACS Nano. 2012, 6, 5283.

    13. D. H. Li, J. Zhang, Q. Zhang, Q. H. Xiong. Electric-Field-Dependent photoconductivity in CdS nanowires and nanobelts: exciton ionization, Franz-Keldysh, and Stark effects. Nano Lett. 2012, 12, 2993.

    14. R. Chen. D. H. Li, H. L. Hu, Y. Y. Zhao, Y. Wang, N. Wang, S. J. Wang, Y. Zhang, J. Hu, Z. X. Shen, Q. H. Xiong. Tailoring optical properties of silicon nanowires by Au nanostructure decorations: enhanced Raman scattering and photodetection. J. Phys. Chem. C.2012, 116, 4416.

    15. X. L. Xu, B. Peng, D. H. Li, J. Zhang, L. M. Wong, Q. Zhang, S. J. Wang, Q. H. Xiong. Flexible visible-infrared metamaterials and their applications in highly sensitive chemical and biological sensing. Nano Lett. 2011, 11, 3232.

    16. J. Gao, R. Chen, D. H. Li, L. Jiang, J. C. Ye, X. C. Ma, X. D. Chen, Q. H. Xiong, H. D. Sun, T. Wu. UV light emitting transparent conducting tin-doped indium oxide (ITO) nanowires. Nanotechnology. 2011, 22, 195706.

    ?17. R. Chen, D. H. Li, P. Liu, Z. P. Peng, G. G. Gurzadyan, Q. H. Xiong, H. D. Sun. Optical and excitonic properties of crystalline ZnS nanowires: toward efficient ultraviolet emission at room temperature. Nano Lett.2010,10, 4956.

    18. D. H. Li, Y. Y. Wang, Y. T. Zhao, G. Q. Xiao, D. Zhao, Z. F. Xu, F. L. Li. The influence of the charged back side on the transmission of highly charged ions through PC nanocapillaries, Nucl. Instrum. Meth. B.2009, 267, 469.

    ?19. D. H. Li, Y. Y. Wang, Y. T. Zhao, G. Q. Xiao, D. Zhao, Z. F. Xu, F. L. Li. Guiding of highly charged ions through PC nanocapillaries, Chinese Phys. Lett. 2009, 26, 063402.

    ? D. H. Li, Y. T. Zhao, Y. Y. Wang, D. Zhao,G. Q. Xiao,A. Qayyum. Studies on kinetic electron emission。 from the interaction of slow multi-charged He, O and Ne ions with W surface, J. At. Mol. 2008, 25, 777.

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