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吕海鹏
2023-05-15 19:36
  • 吕海鹏
  • 吕海鹏 - 助理教授-香港科技大学-化学系-个人资料

近期热点

资料介绍

个人简历


2020-, Assistant Professor, Department of Chemistry, The Hong Kong University of Science and Technology\r
2017-2020, Postdoc, National Renewable Energy Laboratory (Advisor: Matthew C. Beard)\r
2017, Ph.D., University of Southern California (Advisor: Richard L. Brutchey)\r
2012, B.S., Nanjing University

研究领域


"""""1. perovskite-inspired materials.\r
2. control of chirality and spin in semiconductors: synthesis

近期论文


Wang, Z.; Wang, X.; Chen, Z.; Liu, Y.; Xie, H.; Xue, J.; Mao, L.; Yan, Y.*; Lu, H.* Turn-on Circularly Polarized Luminescence in Chiral Indium Chlorides by 5s2 Metal Centers. Angewandte Chemie International Edition , 2022, \r
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Zhang, Z.; Wang, Z.; Sung, H.-Y.; Williams, I. D.; Yu, Z.-G.; Lu, H.* Revealing the Intrinsic Chiroptical Activity in Chiral Metal-Halide Semiconductors. Journal of the American Chemical Society, 2022, \r
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Chen, Z.; Liu, Y.; Gong, S.; Zhang, Z.; Cao, Q.; Mao, L.; Chen, X.*; Lu, H.* Expanding the Absorption and Photoresponse of 1D Lead-Halide Perovskites via Ultrafast Charge Transfer. Journal of Chemical Physics, 2022, 34, 084705 \r
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Lu, H.*; Vardeny, V.; Beard, M.* Control of Light, Spin and Charge with Chiral Metal Halide Semiconductors. Nature Reviews Chemistry, 2022, 6,470-485. \r
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Wang, Z.; Zhang, Z.; Sung, H. Y.; Williams, I. D.; Lu, H.* Structural Asymmetry and Chiroptical Activity of Chiral Antimony-Halide Hybrids. European Journal of Inorganic Chemistry, 2022, e202200275.\r
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Xue, J.; Wang, Z.; Comstock, A.; Wang, Z.; Sung, H. Y.; Williams, I. D.; Sun, D.; Liu, J.; Lu, H.* Chemical Control of Magnetic Ordering in Hybrid Magnetic Fe-Cl Layered Double Perovskites. Chemistry of Materials, 2022, 34, 2813-2823.\r
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Zhang, F.#*; Park, S. Y.#; Yao, C.#; Lu, H.; Dunfield, S. P.; Xiao, X.; Ulicna, S.; Zhao, X.; Hill, L. D.; Chen, X.; Wang, X.; Mundt, L. E.; Stone, K. H.; Schelhas, L. T.; Teeter, G.; Parkin, S.; Ratcliff, E. L.; Loo, Y.-L.; Berry, J. J.; Beard, M. C.; Yan, Y.*; Larson, B. W.*; Zhu, K.* Metastable Dion-Jacobson 2D Structure Enables Efficient and Stable Perovskite Solar Cells. Science, 2022, 375, 71-76.\r
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Feng, T.; Wang, Z.; Zhang, Z.; Xue, J.; Lu, H.* Spin selectivity in chiral metal-halide semiconductors. Nanoscale, 2021, 13, 18925-18940. \r
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Chen, X.#*; Lu, H.#; Wang, K.; Zhai, Y.; Lunin, V.; Sercel, P. C.; Beard, M.* Tuning Spin-Polarized Lifetime in Two-Dimensional Metal-Halide Perovskite Through Exciton Binding Energy. Journal of the American Chemical Society, 2021, 143, 19438-19445.\r
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Hao, J.; Lu, H.*; Mao, L.; Chen, X.; Beard, M. C.; Blackburn, J. F.* Direct Detection of Circularly Polarized Light Using Chiral Copper Chloride–Carbon Nanotube Heterostructures. ACS Nano, 2021, 15, 7608-7617.\r
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Kim, Y.-H.#; Zhai, Y.#; Lu, H.#; Pan, X.; Xiao, C.; Gaulding, E. A.; Harvey, S. P.; Berry, J. J.; Vardeny, Z. V.; Luther, J. M.; Beard, M. C. Chiral Induced Spin Selectivity Enables a Room Temperature Spin-LED. Science, 2021, 371, 1129-1133.\r
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Amerling, E.; Zhai, Y.; Larson, B.; Yao, Y.; Fluegel, B.; Owczarczyk, Z.; Lu, H.; Whittaker-Brooks, L.; Blum, V.; Blackburn, J. L.* Charge Transfer States and Carrier Generation in 1D Organolead Iodide Semiconductors. Journal of Materials Chemistry A, 2021, 9, 14977-14990.\r
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Amerling, E.; Lu, H.; Larson, B. W.; Maughan, A. E.; Phillips, A.; Lafalce, E.; Whittaker-Brooks, L.; Berry, J.; Beard, M. C.; Vardeny, Z. V.; Blackburn, J. L. A Multi-Dimensional Perspective on Electronic Doping in Metal-Halide Perovskites. ACS Energy Letters, 2021, 6, 1104-1123.\r
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Zhang, F.#; Lu, H.#; Larson, B. W.#; Xiao, C.; Dunfield, S. P.; Reid, O. G.; Chen, X.; Yang, M.; Berry, J. J.; Beard, M. C.; Zhu, K. Surface lattice engineering through three-dimensional lead iodide perovskitoid for high-performance perovskite solar cells. Chem, 2021, 7, 774-785. \r
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Tabatabaei, K.; Sully, H. R.; Ju, Z.; Hellier, K.; Lu, H.; Perez, C. J.; Newton, K. A.; Brutchey, R. L.; Bridges, F.; Carter, S. A.; Kauzlarich, S. M. Structural Insights on Microwave-Synthesized Antimony-Doped Germanium Nanocrystals. ACS Nano, 2021, 15, 1685-1700.\r
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Wang, J.; Lu, H.; Pan, X.; Xu, J.; Liu, H.; Liu, X.; Toney, M. F.; Beard, M. C.; Vardeny, Z. V. Spin-Photovoltaic and Photogalvanic Responses of Optoelectronic Devices Based on Chiral Two-Dimensional Hybrid Organic-Inorganic Perovskites. ACS Nano, 2021, 15, 588-595.\r
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Hao, J.; Lu, H.; Nanayakkara, S. U.; Harvey, S. P.; Blackburn, J. L.; Ferguson, A. J. Perovskite Electronic Ratchets for Energy Harvesting. Advanced Electronic Materials, 2020, 2000831.\r
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Lu, H.; Xiao, C.; Li, T.; Song, R.; Maughan, A.; Levin, A.; Brunecky, R.; Berry, J. J.; Blum, V.; Mitzi, D. B.; Beard, M. C. Highly Distorted Chiral Two-Dimensional Tin Iodide Perovskites for Spin Polarized Charge Transport. Journal of the American Chemical Society, 2020, 142, 13030‒13040. \r
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Lu, H.*; Huang, Z.; Martinez, M.; Johnson, J.; Luther, J. M.; Beard, M. C. Transforming Energy Using Quantum Dots. Energy & Environmental Science, 2020, 13, 1347‒1376. \r
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Kim, Y.-H.; Zhai, Y.; Gaulding, E. A.; Habisreutinger, S. N.; Moot, T.; Rosales, B. A.; Lu, H.; Hazarika, A.; Brunecky, R.; Wheeler, L. M.; Berry, J. J.; Beard, M. C.; Luther, J. M. Circularly Polarized Luminescence from Perovskite Nanocrystals with Chiral Ligands Attached During Synthesis or Through Post-Synthetic Ligand Exchange. ACS Nano, 2020, 14, 8816‒8825.\r

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