当前位置: X-MOL首页全球导师 海外导师 › Hu, Liangbing

个人简介

Born in Hubei Providence, China in 1982. Obtained his BS in Physics from University of Science and Technology of China (USTC), with Prof. Yuheng Zhang as advisor, in 2002, where he worked on colossal magnetoresistance (CMR) materials. Got his PhD in Physics from UCLA, where he worked with Prof. George Gruner on nanoelectronics with carbon nanotubes. Co-founded Unidym Inc in 2006 and continued working there until 2009 as a scientist, where he led the effort on roll-to-roll coating and devices integrations of transparent carbon nanotube films. Did his Postdoc in Stanford MSE from 2009-2011 with Yi Cui, where he worked on electrochemical energy storages. Started his career as an assistant professor at MSE and Energy Research Center at University of Maryland College Park in 2011, where he is leading a group focusing on nanomaterials and emerging devices.

研究领域

ENERGY STORAGE BIOMATERIALS (Wood Nanocellulose) NANOMANUFACTURING

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

A Radiative Cooling Structural Material. Li, T.; Zhai, Y.; He, S.; Gan, W.; Wei, Z.; Heidarinejad, M.; Dalgo, D.; Mi, R.; Zhao, X.; Song, J.; Dai, J.; Chen, C.; Aili, A.; Vellore, A.; Martini, A.; Yang, R.; Srebric, J.; Yin, X.; Hu, L.* Science 2019, 364, 760–763. PDF High Temperature Shockwave Stabilized Single Atoms. Yao, Y.; Huang, Z.; Xie, P.; Wu, L.; Ma, L.; Li, T.; Pang, Z.; Jiang, M.; Liang, Z.; Gao, J.; He, Y.; Kline, D.; Zachariah, M.; Wang, C.; Lu, J.; Li, T.; Wang, C.; Shahbazian-Yassar, R.; Hu, L.* Nature Nanotechnology, 2019, 14, 851-857. PDF Cellulose Ionic Conductors with High Differential Thermal Voltage for Low-Grade Heat Harvesting. Li, T.; Zhang, X.; Lacey, S. D.; Mi, R.; Zhao, X.; Jiang, F.; Song, J.; Liu, Z.; Chen, G.; Dai, J.; Yao, Y.; Das, S.; Yang, R.; Briber, Hu, L.* Nature Materials 2019, 18, 608–613. PDF A Printed, Recyclable, Ultra-Strong, and Ultra-Tough Graphite Structural Material. Zhou, Y.; Chen, C.; Zhu, S.; Sui, C.; Wang, C.; Kuang, Y.; Ray, U.; Liu, D.; Brozena, A.; Leiste, U. H.; Quispe, N.; Guo, H.; Vellore, A.; Bruck, H. A.; Martini, A.; Foster, B.; Lou, J.; Li, T.*; Hu, L.* Materials Today 2019, online. PDF Electron/Ion Dual-Conductive Alloy Framework for High-Rate and High-Capacity Solid-State Lithium Metal Batteries. Yang, C.; Xie, H.; Ping, W.; Fu, K.; Liu, B.; Rao, J.; Dai, J.; Wang, C.; Pastel, G.; Hu, L.* Advanced Materials, 2018, 21:1804815. PDF Carbo-Thermal Shock Synthesis of High Entropy Alloy Nanoparticles.Yao, Y.; Huang, Z.; Xie, P.; Lacey, S.; Jacob, R.; Xie, H.; Chen, F.; Nie, A.; Pu, T.; Rehwoldt, M.; Yu, D.; Zachariah, M.; Wang, C.; Shahbazian-Yassar R.; Li, J.; Hu, L.* Science, 2018, 359, 1489 (Article, COVER). PDF Processing bulk natural wood into a high-performance structural material.Song, J.; Chen, C.; Zhu, S.; Zhu, M.; Dai, J.; Ray, U.; Li, Y.; Kuang, Y.; Li, Y.; Quyispe, N.; Yao, Y.; Gong, A.; Leiste, U.H.; Bruck, H.A.; Zhu, J.Y.; Vellore, A.; Martini, A.; Li, T.; Hu, L.* Nature, 2018, 554, 224. PDF High Performance Thermoelectric in 3300 K Reduced Graphene Oxide Networks with High Temperature Capability.Li, T,; Pickel, A.; Yao, Y.; Chen, Y.; Zeng, Y.; Lacey, S.D.; Li, Y.; Wang, Y.; Dai, J.; Wang, Y.; Yang, B.; Fuhrer, M.S.; Marconnet, A.; Drew, D.H.; Hu, L.* Nature Energy, 2018, 3, 148. PDF Negating Interfacial Impedance in Garnet-Based Solid-State Li Metal Batteries.Han, X.; Gong, Y.; Fu, K.K.; He, X.; Hitz, G.T.; Dai, J.; Pearse, A.; Liu, B.; Wang, H.; Rubloff, G.; Mo, Y., Thangadurai, V.;Wachsman.; Hu, L.* Nature Materials, 2017, 16, 572. PDF Inverted Battery Design as Ion Generator for Interfacing with Biosystems.Wang, C.; Fu, K.; Dai, J.; Lacey, S.; Yao, Y.; Pastel, G.; Xu, L.; Zhang, J.; Hu, L.* Nature Communications, 2017, 8, 15609. PDF Tree-Inspired Design for High-Efficiency Water Extraction.Zhu, M.; Li, Y.; Chen, G.; Jiang, F.; Yang, Z.; Luo, X.; Wang, Y.; Lacey, S. D.; Dai, J.; Wang, C.; Hu, L.* Advanced Materials, 2017, 29, 1704107. PDF Jia, C.; Li, Y.; Yao, Y.; Jiang, F.; Yang, Z.; Kuang, Y.; Pastel, G.; Xie, H.; Yang, B.; Hu, L. Rich Mesostructures Derived from Natural Woods toward Energy-water Nexus. Joule, 2017, online. Chen,C.; Zhang,Y.; Li, Y.; Dai,J.; Song, J.; Yao,Y.; Gong,Y.; Kierzewski, I.; Xie,J.; Hu, L. All-wood, Low Tortuosity, Aqueous, Biodegradable Supercapacitors with Ultra-High Capacitance, Energy & Environmental Science, 2017, 10, 538. PDF Chen, F.; Gong, A.; Zhu, M.; Chen, G.; Lacey, S.; Jiang, F.; Li, Y.; Wang, Y.; Dai, J.; Yao, Y.; Song, J.; Liu, B.; Fu, K.; Das, S.; Hu, L. Mesoporous, Three-Dimensional Wood Membrane Decorated with Nanoparticles for Highly Efficient Water Treatment, ACS Nano, 2017, 11, 4275. PDF Adam G. Berger, Stephen M. Restaino, and Ian M. White, Vertical-flow paper SERS system for therapeutic drug monitoring of flucytosine in serum, Analytica Chimica Acta, 949C, 59-66, 2017. PDF Zhu, M.; Wang, Y.; Zhu, S.; Xu, L.; Jia, C.; Dai, J.; Song, J.; Yao, Y.; Wang, Y.; Li, Y.; Henderson, D.; Luo, W.; Li, H.; Minus, M.; Li, T.; Hu, L. Anisotropic, Transparent Films with Aligned Cellulose Nanofibers, Advanced Materials, 2017, 1606284. PDF Li, T. et al. Wood Composite as an Energy Efficient Building Material: Guided Sunlight Transmittance and Effective Thermal Insulation. Adv. Energy Mater. 1601122 (2016). Yao, Y.; Tao, J.; Zou, J.; Zhang, B.; Li, T.; Dai, J.; Zhu, M.; Wang, S.; Fu, K.; Henderson, D.; Hitz, E.; Peng, J.;* Hu, L.* Light Management in Plastic-Paper Hybrid Substrate towards High-Performance Optoelectronics, EES, online Zhu, H.;* Luo,W.; Ciesielski, P.; Fang, Z.; Zhu, J.; Henriksson, G.; Himmel, M.; * Hu, L.* Wood-Derived Materials for Green Electronics, Biological Devices, and Energy Applications, Chemical Review, Accepted. Bao, W.; Pickel, A.; Zhang, Q.; Chen, Y.; Yao, Y.; Wan, J.; Fu, Kun.; Wang, Y.; Dai, J.; Zhu, H.; Drew, D.; Fuhrer, M.; Dames, Chris.; * Hu, L.* Flexible, High Temperature, Planar Lighting with Large Scale Printable Nanocarbon Paper, Advanced Materials, online, Front Inside Cover Liu, Z.; Zhang, L.; Wang, R.; Poyraz, S.; Cook, J.; Bozack, M. ; Das, S. ; Zhang, X.; Hu, L.* Ultrafast microwave nano-manufacturing of fullerene-like metal chalcogenides, Scientific Reports, 2016, 6, 22503

推荐链接
down
wechat
bug