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刘万强
2023-05-08 10:47
  • 刘万强
  • 刘万强 - 教授/博导-长春理工大学-材料科学与工程学院-个人资料

近期热点

资料介绍

个人简历


2015.11—2016.11日本国立产业技术综合研究所エネルギー?環境領域 創エネルギー研究部門 水素材料グループ访问学者 2015.09—至今 长春理工大学材料科学与工程学院 教授 博士生导师 2014.03—2014.06东北师范大学教育部留日预备学校 学员 2012.09—2015.09长春理工大学 材料科学与工程学院副教授 2008.06—2012.09长春理工大学材料科学与工程学院 讲师 2009.03—2011.05中国科学院长春应用化学研究所 稀土资源与利用国家重点实验室博士后 2005.09—2008.06吉林大学超硬材料国家重点实验室 博士学位 2003.09—2005.07吉林大学超硬材料国家重点实验室 硕士学位 1999.09—2003.07北华大学 物理系 学士学位

研究领域


一、储氢材料 1.电化学储氢 材料制备设计、组织构造解析、力学性能、储氢性能和热电传输特性等。合金体系包括Ti-V-Ni,Ti-Zr-Ni及其复相材料。在准晶及其复相材料作为Ni-MH(镍氢)二次电池负极材料的研究方面取得新进展。 2.气态储氢 目前致力于储氢材料的设计、合成及其性能调控的基础理论和应用研究,重点金属配位氢化物储氢材料的纳米化和性能调控。主要包括(1)氢能研究与开发;(2)新型储氢材料的基础研究;(3)氢的制备技术研究。 二、电池材料 主要是清洁能源材料和高能化学电源等高效储能等研究。 以新型能源材料研究为切入点,重点开展新型高效储氢料、镍金属氢化物电池、燃料电池、锂硫电池、液流电池等方面的研究。

近期论文


[1] Xiaojie Zhai, Qingshuang Wang, Tianhao Luo, Zhen Zhao, DongyanLiu, Cheng Xing,Xiande shen, Wanqiang Liu, Wanqiang Liu*, Electrochemical and kinetic properties of Ti41.5Zr41.5Ni17 quasicrystal and LiH composite materials, Materials Research Bulletin, 85 (2017) 196-201. [2] Jianxun Zhao, Xiaojie Zhai, Xing Tao, Zhe Li, Qingshuang Wang, Wanqiang Liu*, Limin Wang, Improved electrochemical hydrogen storage capacity of Ti45Zr38Ni17 quasicrystal by addition of ZrH2, Journal of Materials Science & Technology, in press. 2016年 [1] Qingshuang Wang, Tianhao Luo, Zhen Zhao, Dongyan Liu, Cheng Xing, Jianhua Hou, Dayong Jiang, Wanqiang Liu*, Effect of ZrH2 on electrochemical hydrogen storage properties of Ti1.4V0.6Ni quasicrystal, Journal of Alloys and Compounds, 665 (2016) 57-61. [2] Dongyan Liu, Zhen Zhao, Tianhao Luo, Cheng Xing, Liang Fei, Jing Lin, Jianhua Hou, Dayong Jiang, Wanqiang Liu*, Limin Wang, Effect of LiH on electrochemical hydrogen storage properties of Ti55V10Ni35 quasicrystal, Solid State Sciences, 52 (2016) 19-22. 2015年 [1] Chaofan Liu, Yuhan Duan, Zhongtao Ouyang, Jinming Shang, Kun Liu, Cheng Xing, Yuegang Fu, Wanqiang Liu*, Limin Wang, Effect of Li on structure and electrochemical hydrogen storage properties of Ti55V10Ni35 quasicrystal alloy, International Journal of Hydrogen Energy, 40 (2015) 3015-3022. [2] Kun Liu, Jinming Shang, Zhongtao Ouyang, Yuhan Duan, Cheng Xing, Yuegang Fu, Fei Liang, Jing Lin, Wanqiang Liu*, Limin Wang, Electrochemical hydrogen storage properties of Ti1.4V0.6Ni quasicrystal and TiH composite materials, Journal of Alloys and Compounds, 630 (2015) 158-162. [3] Chaofan Liu, Wanqiang Liu*, Limin Wang, Fei Liang, Jing Lin, Yu Shen, Dayong Jiang, Electrochemical hydrogen storage properties of TixV65-xNi35 (x=45, 55) alloys produced by rapid-quenching, Materials Letters, 141 (2015) 291-293. [4] Jinming Shang, Zhongtao Ouyang, Kun Liu, Cheng Xing, Wanqiang Liu*, Limin Wang, Effect of Li atoms infiltration by the way of electro-osmosis on electrochemical properties of amorphous Mg65Ni27La8 alloy used as negative electrode materials for the nickel-metal hydride secondary batteries, Journal of Non-Crystalline Solids, 415 (2015) 30-35.[5] Zhongtao Ouyang, Kun Liu, Jinming Shang, Cheng Xing, Wanqiang Liu*, Limin Wang , Effect of Li on electrochemical properties of Ti1.4V0.6Ni quasicrystal alloy produced by rapid quenching, Intermetallics, 62 (2015) 50-55. 2014年 [1] Wei Hu, Chong Yin, Zhiying Ma, Wanqiang Liu*, Limin Wang, Structure and Magnetic Behaviors of melt-spun Ti1.4V0.6Ni alloy Containing Icosahedral Quasicrystalline Phase, ASIAN JOURNAL OF CHEMISTRASIAN, 26 (2014) 5821-5823. 2013年 [1] Wanqiang Liu*, Qian Duan, Fei Liang, Jing Lin, Dayong Jiang, Limin Wang, Effect of Ce on electrochemical properties of the TiVNi quasicrystal material as an anode for Ni/MH batteries, International Journal of Hydrogen Energy, 38 (2013) 14810-14815. [2] Wanqiang Liu*, Yoshiteru Kawabe, Fei Liang, Ryoichi Okuyama, Jing Lin, Limin Wang, A composite based on Fe substituted TiVNi alloy: Synthesis, Structure and Electrochemical hydrogen storage Property, Intermetallic, 34 (2013) 18-22. [3] Wanqiang Liu, Shanshan Zhang, Wen Hu, Limin Wang*, Electrochemical hydrogen storage characteristics of TiVNi-Quasicrystalline composite materials, International Journal of Nanotechnology, 10 (2013) 80-88.

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