个人简介
盛欧微,女,1993年6月生,浙江台州人。2020年7月博士毕业于浙江工业大学材料科学与工程学院,获工学博士学位。2020年8月至2022年8月,在浙江工业大学从事博士后研究。2022年8月加入杭州电子科技大学,现任材料与环境工程学院特聘副教授。目前主要从事能源材料与器件研究,包括固态电解质、锂/钠金属负极等。在Science, Nat. Energy, Nat. Commun., Adv. Mater., Nano Lett., Adv. Funct. Mater. 等期刊发表研究论文37篇,其中高被引论文9篇,热点论文2篇,累计引用2200余次,H因子24,申请国家发明专利16项,授权6项,主持国家自然科学基金青年项目、中国博士后科学基金面上项目等省部级及以上项目3项,主持校级科研项目1项,参与国家/省自然科学基金2项。
主要荣誉
(1) 浙江省优秀博士学位论文(2021年)
(2) 国家奖学金(2019年)
近期论文
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Sheng Ouwei; Jin Chengbin; Ju Zhijin; Zheng Jianhui; Liu Tiefeng; Liu Yujing; Wang Yao; Luo Jianmin; Tao Xinyong*; Nai Jianwei*; Stabilizing Li4SnS4 electrolyte from interface to bulk phase with a gradient lithium iodide/polymer layer in lithium metal batteries, Nano Letters, 2022, 22: 8346-8354.
Sheng Ouwei; Hu Hualiang; Liu Tiefeng*; Ju Zhijin; Lu Gongxun; Liu Yujing; Nai Jianwei; Wang Yao; Zhang Wenkui; Tao Xinyong*; Interfacial and ionic modulation of poly (ethylene oxide) electrolyte via localized iodization to enable dendrite-free lithium metal batteries, Advanced Functional Materials, 2021, 32: 2111026.
Sheng Ouwei; Jin Chengbin; Ding Xufen; Liu Tiefeng*; Wan Yuehua; Liu Yujing; Nai Jianwei; Wang Yao; Liu Chuntai; Tao Xinyong*; A decade of progress on solid-state electrolytes for secondary batteries: advances and contributions, Advanced Functional Materials, 2021, 31: 2100891.
Sheng Ouwei; Zheng Jianhui; Ju Zhijin; Jin Chengbin; Wang Yao; Chen Mei; Nai Jianwei; Liu Tiefeng; Zhang Wenkui; Liu Yujing*; Tao Xinyong*; In-situ construction of LiF-enriched interface for stable all-solid-state batteries and its origin revealed by cryo-TEM, Advanced Materials, 2020, 32: 2000223.
Sheng Ouwei; Jin Chengbin; Chen Mei; Ju Zhijin; Liu Yujing; Wang Yao; Nai Jianwei; Liu Tiefeng; Zhang Wenkui; Tao Xinyong*; Platinum nano-interlayer enhanced interface for stable all-solid-state batteries observed via cryo-tran**ission electron microscopy, Journal of Materials Chemistry A, 2020, 8: 13541-13547.
Sheng Ouwei; Jin Chengbin; Luo Jianmin; Yuan Huadong; Huang Hui; Gan Yongping; Zhang Jun; Xia Yang; Liang Chu; Zhang Wenkui; Tao Xinyong*; Mg2B2O5 nanowire enabled multifunctional solid-state electrolytes with high ionic conductivity, excellent mechanical properties and flame-retardant performance, Nano Letters, 2018, 18: 3104-3112.