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个人简介

2009– 厦门大学能源学院,副教授,副院长(2013-2017)2006–2009 美国洛斯阿拉莫斯国家实验室中子科学中心,博士后1997–2005 中国科学技术大学化学系,学士、博士

研究领域

核燃料循环与材料:基于FCM燃料的小微堆,快堆燃料循环 能源材料化学合成:锂离子电池材料化学合成

近期论文

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[3] H. Yin, Q. Guo*, D. He, J. Li*, and S. Sun, Structural characterization and electrochemical performance of macroporous graphite-like C3N3 prepared by the Wurtz reaction and heat treatment, RSC Advances, 2017, 7(69), 44001-44008. [4] H. Yin, Q. Guo*, D. He, J. Li*, and S. Sun, Acid-induced crystallinity enhancement of graphite-like C3N3+xHy synthesized through a facile one-pot approach, Chemical Physics Letters, 2017, 669, 22-28. [5] D. He, Q. Guo*, H. Yin, J. Li, and Z. Gong, Sol-Gel Combustion Synthesis of Li1.2Mn0.54Ni0.13Co0.13O2 as Cathode Materials for Lithium Ion Batteries, International Journal of Electrochemical Science, 2017, 12(1), 455-465. [6] Q. Guo*, P. Guo, J. Li*, H. Yin, J. Liu, F. Xiao, D. Shen, and N. Li, Fe3O4–CNTs nanocomposites: Inorganic dispersant assisted hydrothermal synthesis and application in lithium ion batteries, Journal of Solid State Chemistry, 2014, 213, 104–109. [7] Q. Guo*, Y. Zhao, W. L. Mao, Z. Wang, Y. Xiong, and Y. Xia, Cubic to tetragonal phase transformation in cold-compressed Pd nanocubes, Nano Letters, 2008, 8(3), 972–975. [8] Q. Guo*, Y. Zhao, Z. Wang, S. E. Skrabalak, Z. Lin, and Y. Xia, Size dependence of cubic to trigonal structural distortion in silver micro- and nanocrystals under high pressure, Journal of Physical Chemistry C, 2008, 112(51), 20135–20137. [9] Q. Guo*, Y. Zhao, C. Jiang, W. L. Mao, Z. Wang, J. Zhang, and Y. Wang, Pressure-induced cubic to monoclinic phase transformation in erbium sesquioxide Er2O3, Inorganic Chemistry, 2007, 46(15), 6164–6169. [10] Q. Guo, C. Yi, L. Zhu, Q. Yang, and Y. Xie*, Chemical synthesis of cross-linked polyaniline by a novel solvothermal metathesis reaction of p-dichlorobenzene with sodium amide, Polymer, 2005, 46(9), 3185–3189. [11] Q. Guo, Q. Yang, L. Zhu, C. Yi, and Y. Xie*, Synthesis of carbon nitrides with graphite-like or onion-like lamellar structures via a solvent-free route at low temperatures, Carbon, 2005, 43(7), 1386–1391. [12] Q. Guo, Y. Xie*, X. Wang, S. Zhang, T. Hou, and S. Lv, Synthesis of carbon nitride nanotubes with the C3N4 stoichiometry via a benzene-thermal process at low temperatures, Chemical Communications, 2004, 1, 26–27.

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