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个人简介

教育部工程中心副主任。美国华盛顿大学访问学者、山东大学访问学者,兼任中国硅酸盐学会微纳技术分会理事、副秘书长。2004年6月毕业于中国地质大学(武汉)应用化学专业,硕-博连读,2009年6月博士毕业留校工作。2010年12月任副教授,2012年入选中国地质大学(武汉)“摇篮计划”,并负责建设“纳米矿物材料特色学科团队”。主持装发教育部联合基金、国家自然科学基金、湖北省科技创新重大专项、湖北省自然科学基金、武汉市科技攻关重点项目等课题10余项。 学习和工作经历 2013.12 ~2015.1 University of Washington访问学者 2015.9~2016.8 山东大学 访问学者 2010.12 ~至今 中国地质大学(武汉)材化学院副教授 2009.7~2010.12 中国地质大学(武汉)材化学院 讲师 2004.7~2009.6中国地质大学(武汉)材化学院 博士(硕-博连读) 2000.9~2004.6中国地质大学(武汉)材化学院 学士

研究领域

1.二次离子电池及3D打印器件 2.固态电解质及全固态电池 3.等离子喷涂及涂层材料

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)

[1] Shanshan Duan,1 Hongyun Jin 1,* Junxi Yu, Ehsan Nasr Esfahani, Bing Yang, Jiale Liu, Yazhou Ren, Ying Chen, Luhua Lu, Xiaocong Tian, Shuen Hou, Jiangyu Li. Non-equilibrium Microstructure of Li1.4Al0.4Ti1.6(PO4)3 Superionic Conductor by Spark Plasma Sintering for Enhanced Ionic Conductivity, Nano Energy,2018, 51, 19-25. (IF:13.1,T1) [2]H Y Jin, J Dong,Evan Uchaker, et al.Three dimensional architecture of carbon wrapped multilayer Na3V2O2(PO4)2F nanocubes embedded in graphene for improved sodium ion batteries, Journal of. Material. Chemistry. A, 2015, 3, 17563-17568.(IF:9.9,T1) [3]Evan Uchaker,H Y Jin, Y Pei, et al. Elucidating the Role of Defects for Electrochemical Intercalation in Sodium Vanadium Oxide, Chemistry of Materials 2015, 27 (20), 7082-7090.(IF:9.89,T1) [4]Zhengjia Ji, Wanyue Luo, Keke Zhou, Shuen Hou, Qifeng Zhang, Jiangyu Li, Hongyun Jin*.Effects of the shapes and dimensions of mullite whisker on the friction andwear behaviors of resin-based friction materials. Wear, 2018, 406-407: 118-125. (T2) [5]HY Jin,Min Liu, Shuen Hou, and Guozhong Cao. Nanoporous carbon leading to the high performance of Na3V2O2(PO4)2F@Carbon/Graphene cathode in sodium ion battery, CrystEngComm, 2017, DOI: 10.1039/C7CE00726D.(T2) [6]Min Liu,Hongyun Jin*, Evan Uchaker, Guozhong Cao, Shuen Hou* and Jiangyu Li,One-pot synthesis of in-situ carbon-coated Fe3O4 as long-life lithium-ion battery anode. Nanotechnology, 2017,28(15),155603-155611.(T2) [7]Zhengjia Ji,Hongyun Jin*, Wanyue Luo, Feiran Cheng, Yong Chen, Yazhou Ren, Yaoqing Wu, Shuen Hou, The effect of crystallinity of potassium titanate whisker on the tribological behavior of NAO friction materials. Tribology International, 2017, 107: 213-220.(T2) [8]Chunhui Xu,Hongyun Jin*, Qifeng Zhang,Can Huang,Daifeng Zou, Fujian He,Shuen Hou*.A novel Co-ions complexation method to synthesize pyrochlore La2Zr2O7.Journal of the European Ceramic Society,2017,37(8),2871-2876.(T2) [9]Chunhui Xu, Jianying Li, Fujian He, Yanli Cui, Can Huang,Hongyun Jin*andShuen Hou.Al2O3–Fe3O4–expanded graphite nano-sandwich structure for fluoride removal from aqueous solution. RSC Adv., 2016, 6, 97376-97384.(T2) [10]H Y Jin,Z Ji,J Yuan, M Liu, S Hou. Research on Removal of Fluoride in Aqueous Solution by Alumina-modified Expanded Graphite Composite [J].Journal of Alloys and Compounds, 2015,620,361-367. [11]Yaoqing Wu,Hongyun Jin*, et al. Simulation of Temperature Distribution in Disk Brake Considering a Real Brake Pad Wear. Tribology Letters,2014,56:205-213.(T2) [12]H Y Jin, J Yuan,H Y Hao,Z Ji, M Liu, S Hou. The exploration of a new adsorbent as MnO2modified expanded graphite [J].Materials Letters. 2013,110, 69-72.(T2) [13]Jin H Y,Wu YQ, Hou SE, Li YL, Liu M, Ji ZJ, Yuan J. The effect of spherical silica powder on the tribological behavior of phenolic resin-based friction materials [J]. Tribology Letters,2013,51(1),65–72.(T2) [14]Yaoqing Wu,Hongyun Jin*,Shuen Hou, Zeng M. Effects of glass-to-rubber transition on the temperature, load and speed sensitivities of nano-ZrO2reinforced polybenzoxazine. Wear,2013,297 (2), 1025–1031.(T2) [15]Yaoqing Wu,Hongyun Jin*,Shuen Hou,Yunlong Li.A load-dependent model to investigate the velocity dependence of friction coefficient: ZrO2/Polymer nanocomposite[J].Tribology Letters,2012, 48(3), 285-291.(T2) [16]Jin H Y, Liu J, Xu L. Preparation of fused spherical silica powder by oxygen-acetylene flame spheroidization process [J]. Journal of Materials Processing Technology, 2010,210(1):81-84.(T2) [17]Jin H Y, Wang N, Xu L, Hou S E. Synthesis and conductivity of cerium oxide nanoparticles [J]. Materials Letters,2010,64(11):1254-1256.(T2)

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