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个人简介

Yongjie Hu is a professor in the School of Engineering and Applied Science at the University of California, Los Angeles (UCLA). Before joined the faculty of UCLA, He received his Ph.D. degree from Harvard University, followed by a postdoctoral fellowship at the Massachusetts Institute of Technology (MIT). His research has been recognized with Alfred P. Sloan Research Fellowship, ASME Bergles-Rohsenow Young Investigator Award in Heat Transfer, NSF CAREER Award, AFOSR Young Investigator Award, Vernroy Makoto Watanabe Excellence in Research Award, ACS PRF Doctoral New Investigator Award, and UCLA Career Development Award. EDUCATION Harvard University, 2012 Massachusetts Institute of Technology, 2014 AWARDS AND RECOGNITION 2020 Vernroy Makoto Watanabe Excellence in Research Award 2019 ASME Bergles-Rohsenow Young Investigator Award in Heat Transfer 2019 National Academy of Engineering (NAE) U.S. Frontiers of Engineering 2019 Alfred P. Sloan Research Fellowship 2018 UCLA Faculty Career Development Award 2018 NSF CAREER Award 2017 Air Force Young Investigator Award 2017 American Chemical Society Doctoral New Investigator Award

研究领域

Heat transfer and electron transport in nanostructures, interfaces & packaging. Thermal, electronic, optoelectronic, thermoelectric devices and systems. Energy conversion, storage and thermal management. Ultrafast optical spectroscopy and high-frequency electronics. Nanomaterials design, processing and manufacturing.

近期论文

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M. Li, H. Wu, E.M. Avery, Z. Qin, D.P. Goronzy, H.D. Nguyen, T. Liu, P.S. Weiss, Y. Hu, Electrically gated molecular thermal switch, Science 382, 585-589 (2023). S. Li, Z. Qin, H. Wu, M. Li, M. Kunz, A. Alatas, A. Kavner, Y. Hu, Anomalous thermal transport under high pressure in boron arsenide, Nature 612, 459-464 (2022). J.S. Kang, M. Li, H. Wu, H. Nguyen, and Y. Hu, Experimental observation of high thermal conductivity in boron arsenide, Science 361, 575-578 (2018). H. Wu, Z. Qin, S. Li, L. Lindsay, and Y. Hu, Nonperturbative determination of isotope-induced anomalous vibrational physics, Phys. Rev. B 108, L140302 (2023). Machine Learning for Harnessing Thermal Energy: from Materials Discovery to System Optimization M. Li, L. Dai, Y. Hu ACS Energy Letters 7, 3204 (2022). Modeling analysis for design of microshutters with new electrode configuration M. Ke, A. S. Kutyrev, C.A. Kotecki, K. Kim, M. A.Greenhouse, M. P. Chang, R. Fettig, R. P. Brekosky, Y. Hu Sensors and Actuators A: Physical 343, 113661 (2022). Total solar spectrum energy converter with integrated photovoltaics, thermoelectrics, and thermal energy storage: system modeling and design Nicholas Farrar-Foley, Nicolas Augustus Rongione, Huan Wu, Adrienne Lavine, Yongjie Hu International Journal of Energy Research 46, 5731 (2022). Transparent silica aerogel slabs synthesized from nanoparticle colloidal suspensions at near ambient conditions on omniphobic liquid substrates M. Marszewski, S. C King, T. Galy, G. Kashanchi, A. Dashti, Y. Yan, M. Li, D. Butts, P. McNeil, E. Lan, B. Dunn, Y. Hu, S. Tolbert, L. Pilon Journal of Colloid and Interface Science 606, 884 (2022). Thermal management materials for energy-efficient and sustainable future buildings Zihao Qin, Man Li, Jessica Flohn, Yongjie Hu Chemical Communications 57, 12236 (2021). Integration of boron arsenide cooling substrates into gallium nitride devices J. Kang, M. Li, H. Wu, H. Nguyen, T. Aoki and Y. Hu Nature Electronics 4, 416-423 (2021). Flexible thermal interface based on self-assembled boron arsenide for high-performance thermal management Y. Cui, Z. Qin, H. Wu, M. Li, and Y. Hu Nature Communications 12, 1284 (2021). Ab initio determination of ultrahigh thermal conductivity in ternary compound H. Wu, H. Fan, and Y. Hu Phys. Rev. B 103, L041203 (2021). High-yield exfoliation of 2D semiconductor monolayers and reassembly of organic/inorganic artificial superlattices Z. Lin, Z. Wan, F. Song, B. Huang, C. Jia, Q. Qian, J. Kang, Y. Wu, X. Yan, L. Peng, C. Wan, J. Zhou, Z. Sofer, I. Shakir, Z. Almutairi, S. Tolbert, X. Pan, Y. Hu, Y. Huang, X. Duan Chem 7, 1-16 (2021). Examining the role of atomic scale heterogeneity on the thermal conductivity of transparent, thermally insulating, mesoporous silica−titania thin films S. C. King, M. Li, T. Galy, Y. Yan, J. Kang, V. Basile, Y. Li, M. Marszewski, L. Pilon, Y. Hu, S. H. Tolbert J. Phys. Chem. C 124, 27442 (2020). Controlling thermal conductivity in mesoporous silica films using pore size and nanoscale architecture Y. Yan, M. Li, S. King, T. Galy, M. Marszewski, J. Kang, L. Pilon, Y. Hu, S. H. Tolbert J. Phys. Chem. Lett. 11, 3731 (2020). Observation of strong higher-order lattice anharmonicity in Raman and infrared spectra X. Yang, T. Feng, J. Kang, Y. Hu, J. Li, X. Ruan Phys. Rev. B 101, 161202(R) (2020). Engineering mesoporous silica for superior optical and thermal properties D.M. Butts, P.E. McNeil, M. Marszewski, E. Lan, T. Galy, M. Li, J. Kang, D. Ashby, S. King, S. H. Tolbert, Y. Hu, L. Pilon, B.S. Dunn MRS Energy & Sustainability 7, E39 (2020). Complementary doping of van der Waals materials through controlled intercalation for monolithically integrated electronics M. Ke, H. Nguyen, H. Fan, M. Li, H. Wu, and Y. Hu Nano Research 13, 1369 (2020). Emerging interface materials for electronics thermal management: experiments, modeling, and new opportunities Y. Cui, M. Li, and Y. Hu Journal of Materials Chemistry C 8, 10568 (2020). Basic physical properties of cubic boron arsenide J. Kang, M. Li, H. Wu, H. Nguyen, and Y. Hu Applied Physics Letters 115, 122103 (2019). Ab initio investigation of single-layer high thermal conductivity boron compounds H. Fan, H. Wu, L. Lindsay, and Y. Hu Phys. Rev. B 100, 085420 (2019) Intrinsic low thermal conductivity and phonon renormalization due to strong anharmonicity of single-crystal tin selenide J. Kang, H. Wu, M. Li, and Y. Hu Nano Letters 19, 4941 (2019) Anisotropic thermal boundary resistance across two-dimensional black phosphorous: experiment and atomistic modeling of interfacial energy transport M. Li, J. Kang, H. Nguyen, H. Wu, T. Aoki, and Y. Hu Advanced Materials 31, 1901021 (2019) Ultralight and flexible monolithic polymer aerogel with extraordinary thermal insulation by a facile ambient Process M. Li, Z. Qin, Y. Cui, C. Yang, C. Deng, Y. Wang, J. S. Kang, H. Xia, and Y. Hu Advanced Materials Interfaces 6, 1900314 (2019) High-performance field emission based on nanostructured tin selenide for nanoscale vacuum transistors H. Nguyen, J. S. Kang, M. Li and Y. Hu Nanoscale 11, 3129 (2019) High-performance solution-processable flexible SnSe nanosheet films for lower grade waste heat recovery N. Rongione, M. Li, H. Wu, H. Nguyen, J. S. Kang, B. Ouyang, H. Xia, Y. Hu Advanced Electronic Materials 1800774:1-6 (2019). Thick transparent nanoparticle-based mesoporous silica monolithic slabs for thermally insulating window materials M. Marszewski, S.C. King, Y. Yan, T. Galy, M. Li, A. Dashti, D.M. Butts, J.S. Kang, P.E. McNeil, E. Lan, B.S. Dunn, Y. Hu, S. Tolbert, L. Pilon ACS Applied Nanomaterials 2, 4547 (2019) Exploring the effect of porous structure on thermal conductivity in templated mesoporous silica films Y. Yan, S. King, M. Li, T. Galy, M. Marszewski, J. Kang, L. Pilon, Y. Hu, S. Tolbert Journal of Physical Chemistry (2019)

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