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个人简介

刘宾虹, 博士, 教授。1985年毕业于浙江大学材料科学与工程系,获学士学位。1988年和1991年先后在浙江大学材料系获硕士和工学博士学位,毕业后留校工作。1994年12月晋升为副研究员。1995年至1997年在韩国科学技术院(KAIST)材料科学和工程系从事博士后研究工作。1997年至2006年在日本工学院大学任客座研究员。于2006年4月回浙江大学工作。2008年12月晋升为研究员,2011年转为教授。主要从事能源材料包括各类制氢和储氢材料、高性能液态直接燃料电池的研究开发工作。近年来主要研究以硼氢化物为能源介质的制氢、可逆储氢、直接燃料电池以及硼氢化物的再生合成等,研究工作受到国内外同行的广泛关注

研究领域

储氢材料等能量存储与转换材料 燃料电池

近期论文

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Qian Wen Bao, Jin Fang Liu, Bin Hong Liu, Zhou Peng Li, Destabilization and regeneration of LiBH4 using N-containing hydrocarbon based polymers for hydrogen storage, J. Alloys and Compounds, 703(2017)580-590. Hao Liu, Bin Hong Liu, Zhou Peng Li, A reduced graphene oxide/SnO2/polyaniline nanocomposite for the anode material of Li-ion batteries, Solid State Ionics, 294(2016)6-14. Qian Wen Bao, Wei Yuan Pan, Hao Liu, Bin Hong Liu, Zhou Peng Li, Reversible hydrogen release and uptake for composite of LiBH4 with the conjugated polymer poly(p-phenylene). Int. J. Hydrogen Energy, 41(2016)1027-1034. Wei Yuan Pan, Qian Wen Bao, Yang Jun Mao, Bin Hong Liu, Zhou Peng Li, Low-temperature synthesis of nanosized metal borides through reaction of lithium borohydride with metal hydroxides or oxides, J. Alloys and Compounds, 651(2015)666-672. Wei Yuan Pan, Bin Hong Liu, Zhou Peng Li, Hydrogen storage performance of 2LiH+MgB2 doped with hydrothermal-synthesized ZrO2 nanorods, Int. J. Hydrogen Energy, 39(2014)15595-15603. Jian Hua Liu, Bin Hong Liu, Zhou Peng Li, Fe3O4/Graphene composites with a porous 3D network structure synthesized through self-assembly under electrostatic interactions as anode materials of high-performance Li-ion batteries, Acta Phys.-Chim. Sin. 30(9)(2014)1650-1658. Xiao Yan Chen, Bin Hong Liu, Zhou Peng Li, Fe3O4/C composites synthesized from Fe-based xerogels for anode materials of Li-ion batteries, Solid State Ionics, 261(2014)45-52. Jie Zhou, Bin Hong Liu, Zhou Peng Li, Nanostructure optimization of LiFePO4/carbon aerogel composites for performance enhancement, Solid State Ionics, 244(2013)23-29. Pei Pei Yuan, Bin Hong Liu, He Peng Zhu, Wei Yuan Pan, Zhou Peng Li, Destabilized dehydrogenation reaction of LiBH4 by AlF3, J. Alloys Compds, 557(2013)124-129. (2013.4) Zhou Peng Li, Zi Xuan Liu, Kun Ning Zhu, Zhuo Li, Bin Hong Liu, Synergy among transition element, nitrogen, and carbon for oxygen reduction reaction in alkaline medium, J. Power Sources, 219(2012)163-171. Pei Pei Yuan, Bin Hong Liu, Zhou Peng Li, A comparative study of LiBH4-based composites with metal hydrides and fluorides for hydrogen storage, Int. J. Hydrogen Energy, 36(2011)15266-15272. (2011.11) Ying Jiang, Bin Hong Liu, Dehydrogenation kinetics of 2LiBH4+MgH2 enhanced by hydrogen back pressure and a CuCl2 catalyst, J. Alloys and Compounds, 509(2011)9055-9059. (2011.09) Pei Pei Yuan, Bin Hong Liu, Bang Jie Zhang, and Zhou Peng Li, Reversible Hydrogen storage Composite based on 6LiBH4+CaF2, J. Phys. Chem. C, 115(2011)7067-7075. (2011.04) Bin Hong Liu, Bang Jie Zhang,Ying Jiang, Hydrogen storage performance of LiBH4+1/2MgH2 composites improved by Ce-based additives, Int. J. Hydrogen Energy, 36(2011)5418-5424. (2011.05) Bang Jie Zhang, Bin Hong Liu,Zhou Peng Li,Destabilization of LiBH4 by (La, Ce)(F, Cl)3 for hydrogen storage, J. Alloys and Compounds, 509(2011)751-757. (2011.01) Bang Jie Zhang, Bin Hong Liu, Hydrogen desorption from LiBH4 destabilized by chlorides of transition metal Fe, Co and Ni. Int. J. Hydrogen Energy, 35(2010)7288-7294. (2010.07) Bin Hong Liu, Jun Qiang Yang, Zhou Peng Li, Concentration ratio of [OH-]/[BH4-]: A controlling factor for the fuel efficiency of borohydride electro-oxidation, Int. J. Hydrogen Energy, 34(2009)9436-9443. (2009.12) Jun Qiang Yang, Bin Hong Liu, Song Wu, Carbon-supported Pd catalysts: Influences of nanostructure on their catalytic performance for borohydride electrochemical oxidation, J. Power Sources, 194(2009)824-829. (2009.12) Bin Hong Liu, Zhou Peng L, Jin Ke Zhu, Sodium borohydride formation when Mg reacts with hydrous sodium borates under hydrogen, J. Alloys and Compounds, 476(2009)L16-L20. Bin Hong Liu, Zhou Peng Li and S. Suda, Influences of alkali in borates on recovery of sodium borohydride, J. Alloys and Compounds, 474(2009)L6-L9.

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