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          侯燕

          侯燕

          侯燕

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          個人簡介:侯燕,女,博士。E-mail: houyan@htu.edu.cn

          教育背景:

          2001.09-2005.06,河南師范大學化學系,化學工程與工藝專業(yè),工學學士。

          2013.09-2018.12,河南師范大學化學化工學院,化學專業(yè),理學博士。

          2017.06-2018.12,南方科技大學工學院材料系,訪問學生。

          工作經歷:

          2005.09-2013.06,高中化學教師。

          2018.12至今,河南師范大學化學化工學院,教師。

          研究領域與興趣:

          儲能關鍵材料的設計合成及其電化學反應機制。

          發(fā)表論文:

          1. Yan Hou, Kun Chang, Bao Li, Hongwei Tang, Zhenyu Wang, Jianli Zou, Huimin Yuan, Zhouguang Lu*, Zhaorong Chang*, Highly [010]-oriented self-assembled LiCoPO4/C nanoflakes as high-performance cathode for lithium ion batteries. Nano Research, 2018, 11, 2424–2435.

          2. Yan Hou, Kun Chang, Zhenyu Wang, Shuai Gu, Qiong Liu, Junjun Zhang, Hua Cheng, Shenglin Zhang, Zhaorong Chang*, Zhouguang Lu*, Rapid microwave-assisted refluxing synthesis of hierarchical mulberry-shaped Na3V2(PO4)2O2F@C as high performance cathode for sodium &lithium-ion batteries. SCIENCE CHINA Materials,2018, DOI:10.1007/s40843-018-9342-0.

          3. Yan Hou, Hongwei Tang, Bao Li, Kun Chang, Zhaorong Chang*, Xiao-Zi Yuan, Haijiang Wang, Hexagonal-layered Na0.7MnO2.05 via solvothermal synthesis as an electrode material for aqueous Na-ion supercapacitors, Materials Chemistry and Physics,2016, 171, 137–144.

          4. Liqing He, Huaijun Lin, Hai-Feng Li, Yaroslav Filinchuk, Junjun Zhang, Ying Liu, Mingyang Yang, Yan Hou, Yonghong Deng, Hai-Wen Li, Huaiyu Shao, Liping Wang, Zhouguang Lu*, Na3NH2B12H12 as high performance solid electrolyte for all-solid-state Na-ion battery application, Journal of Power Sources,2018, 396, 574–579.

          5. Yalei Qin, Hongwei Tang, Kun Chang, Bao Li, Yihui Li, Yan Hou, Zhaorong Chang*, In situ synthesis of open hollow tubular MnO/C with high performance anode materials for lithium ion batteries using kapok fiber as carbon matrix, Nanotechnology,2019, 30, 015403.



          Dr. Yan Hou, E-mail: houyan@htu.edu.cn

          Education:

          Ph.D., School of Chemistry and Chemical Engineering, Henan Normal University, Sep. 2013–Dec. 2018.

          B.E.S., School of Chemistry and Chemical Engineering, Henan Normal University, Sep. 2001–June 2005.

          Teaching Experience:

          School of Chemistry and Chemical Engineering, Henan Normal University, Dec. 2018–present

          Chemistry teacher of senior high school, Sep. 2005–June 2013.

          Research Interests:

          Design and synthesis of nanostructures and their application in energy storage and conversion.

          Publication

          1. Yan Hou, Kun Chang, Bao Li, Hongwei Tang, Zhenyu Wang, Jianli Zou, Huimin Yuan, Zhouguang Lu*, Zhaorong Chang*, Highly [010]-oriented self-assembled LiCoPO4/C nanoflakes as high-performance cathode for lithium ion batteries. Nano Research, 2018, 11, 2424–2435.

          2. Yan Hou, Kun Chang, Zhenyu Wang, Shuai Gu, Qiong Liu, Junjun Zhang, Hua Cheng, Shenglin Zhang, Zhaorong Chang*, Zhouguang Lu*, Rapid microwave-assisted refluxing synthesis of hierarchical mulberry-shaped Na3V2(PO4)2O2F@C as high performance cathode for sodium &lithium-ion batteries. SCIENCE CHINA Materials,2018, DOI:10.1007/s40843-018-9342-0.

          3. Yan Hou, Hongwei Tang, Bao Li, Kun Chang, Zhaorong Chang*, Xiao-Zi Yuan, Haijiang Wang, Hexagonal-layered Na0.7MnO2.05 via solvothermal synthesis as an electrode material for aqueous Na-ion supercapacitors, Materials Chemistry and Physics,2016, 171, 137–144.

          4. Liqing He, Huaijun Lin, Hai-Feng Li, Yaroslav Filinchuk, Junjun Zhang, Ying Liu, Mingyang Yang, Yan Hou, Yonghong Deng, Hai-Wen Li, Huaiyu Shao, Liping Wang, Zhouguang Lu*, Na3NH2B12H12 as high performance solid electrolyte for all-solid-state Na-ion battery application, Journal of Power Sources,2018, 396, 574–579.

          5. Yalei Qin, Hongwei Tang, Kun Chang, Bao Li, Yihui Li, Yan Hou, Zhaorong Chang*, In situ synthesis of open hollow tubular MnO/C with high performance anode materials for lithium ion batteries using kapok fiber as carbon matrix, Nanotechnology,2019, 30, 015403.





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