向 斌


 姓  名: 向 斌
 地  址: 安徽省合肥市金寨路96号材料化学与工程系
 邮  编:230026
 电  话:0551-63607833 (15656077011)
 电  邮:
 主  页:




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 教育与科研经历
  2012年3月-至今教授,博导;中国科学技术大学
  2010年8月-2012年3月助理项目科学家;加州大学伯克利分校材料系
  2008年8月-2010年8月博士后;美国劳伦斯国家实验室国家电镜中心
  2007年8月-2008年8月博士后;加州大学伯克利分校材料系
  2005年8月-2007年7月博士后;加州大学圣地亚哥分校
  2000年9月-2005年7月博士;北京大学物理学院
  2013.4-present博士;北京大学物理学院


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 目前研究方向
  1.二维材料的合成、表征和微纳器件在电学、光电、储能和能量转换等领域的应用。
  2.稀磁半导体的制备、表征和器件的构筑。
  3.新能源材料。


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 代表性论文
  1.jing li, shaobo han, junwei zhang, junxiang xiang, xingqun zhu, ping liu, xuefeng li, chao feng, bin xiang*, meng gu*, synthesis of three-dimensional free-standing wse2/c hybrid nanofibers as anodes for high-capacity lithium/sodium ion batteries, j. mater. chem. a 7 19898-19908 (2019).
  2.xueyan lei, shicheng ge, yi-hong tan, jing li, zhi wang, ping liu, chao feng, bin xiang*, bimetallic phosphosulfide zn-ni-p-s nanosheets as binder-free electrodes for aqueous asymmetric supercapacitors with impressive performance, j. mater. chem. a 7 24908-24918 (2019).
  3.jing li, xuefeng li, ping liu, xingqun zhu, rai nauman ali, hina naz, yan yu, bin xiang*, self-supporting hybrid fiber mats of cu3p-co2p/n-c endowedwith enhanced lithium/sodium ions storage performances, acs appl. mater. interfaces 11, 11442-11450 (2019).
  4.chao feng, junxiang xiang, ping liu, xiangqi wang, jianlin wang, guojing hu, meng huang, zhi wang, zengming zhang, yuan liu, yalin lu, bin xiang*, magnetic logic inverter from crossed structures of defect-free graphene with large unsaturated room temperature negative magnetoresistance. nano research 12, 2485-2489 (2019).
  5.qi sun, zhijie wang, zijiao zhang, qian yu, yan qu, jingyu zhang, yan yu, bin xiang*, rational design of graphene-reinforced mno nanowires with enhanced electrochemical performance for li-ion batteries. acs appl. mater. interfaces 8, 6303-6308 (2016).
  6.zhijie wang, xiaoliang yu, wenhui he, yusuf valentino kaneti, da han, qi sun, yan-bing he, and bin xiang*, construction of a unique two-dimensional hierarchical carbon architecture for superior lithium-ion storage. acs appl. mater. interfaces 8, 33399-33404 (2016).
  7.l. luo, b. zhao, b. xiang*, c. wang*, size-controlled intercalation-to-conversion transition in lithiation of transition metal chalcogenides nbse3acs nano, 10, 1249-1255 (2016).
  8.q. fu, l. yang, w. wang, a. han, j. huang, p. du, z. fan, j. zhang, and b. xiang*, synthesis and enhanced electrochemical catalytic performance of monolayer ws2(1-x)se2x with a tunable band gap, advanced materials, 27, 4732-4738 (2015).
  9.l. yang, h. hong, q. fu, y. huang, j. zhang, x. cui, z. fan, k. liu*, and b. xiang*, single-crystal atomic-layered molybdenum disulfide nanobelts with high surface activity, acs nano, 9, 6478-6483 (2015).
  10.l. yang, q. fu, j. huang, j. huang, z. fan, j. zhang, and b. xiang*, large-area synthesis of monolayer mos2(1-x)se2x with a tunable band gap and its enhanced electrochemical catalytic activity, nanoscale, 7, 10490-10497 (2015).
  11.j. huang, l. yang, d. liu, j. chen, q. fu, y. xiong, f. lin, and b. xiang*, large-area synthesis of monolayer wse2 on sio2/si substrate and its device applications, nanoscale, 7, 4193-4198 (2015).
  12.w. wang, x. cui, e. yang, q. fan, bin xiang*, negative refraction in molybdenum disulfide, optics express 23, 22024-22033 (2015).
  13.w. li, l. yang, j. wang, bin xiang*, y. yu, three-dimensionally interconnected tas3 nanowire network as anode for high-performance flexible li-ion battery, acs appl. mater. interfaces, 7, 5629-5633 (2015).
  14.m. shen, a. han, x. wang, y. g. ro, a. kargar, y. lin, h. guo, p. du, j. jiang, j. zhang, s. a. dayeh, and bin xiang*, atomic scale analysis of the enhanced electro- and photo-catalytic activity in high-index faceted porous nio nanowires, scientific reports, 5, 8557 (2015).
  15.l. yang, w. wang, q. fu, j. zhang, bin xiang*, mos2(1-x)se2x nanobelts for enhanced hydrogen evolution, electrochimica acta, 185, 236-241 (2015).
  16.l. yang, x. cui, j. zhang, k. wang, m. shen, s. zeng, s. a. dayeh, l. feng, and bin xiang*, lattice strain effects on the optical properties of mos2 nanosheets, scientific reports, 4, 5649 (2014).
  17.m. shen, z. yan, l. yang, p. du, j. zhang, and bin xiang*, mos2 nanosheet/tio2 nanowire hybrid nanostructures for enhanced visible-light photocatalytic activities, chemical communications, 50, 15447-15449 (2014).
  18.x. yu, z. sun, z. yan, bin xiang*, x. liu, and p. du, direct growth of porous crystalline nico2o4 nanowire arrays on a conductive electrode for high-performance electrocatalytic water oxidation, j. mater. chem. a, 2, 20823-20831 (2014).
  19.l. yang, d. zhong, j. zhang, z. yan, s. ge, p. du, j. jiang, d. sun*, x. wu, z. fan, s. a. dayeh, and b. xiang*, optical properties of metal-molybdenum disulfide hybrid nanosheets and their application for enhanced photocatalytic hydrogen, acs nano, 8, 6979-6985 (2014).

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