常兴华

副教授 硕士生导师

入职时间:2018-08-31

所在单位:资源加工与生物工程学院

职务:党支部书记/副系主任

学历:博士研究生毕业

性别:男

学位:博士学位

在职信息:在职

毕业院校:北京大学

曾获荣誉:

2023-08-31  当选:  Best Researcher Award

2023-11-01  当选:  中南大学教学质量优秀奖

2023-05-04  当选:  中南大学2021-2023年优秀共产党员

2022-01-02  当选:  中南大学教学质量优秀奖

2022-01-02  当选:  中南大学创新创业教育类教学质量优秀奖

2021-06-02  当选:  中南大学首届“课程思政三十佳”奖

2020-08-14  当选:  湖南省创新创业大赛三等奖

   
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Silica-Derived Hydrophobic Colloidal Nano-Si for Lithium-Ion Batteries

发布时间:2020-05-23

点击次数:

影响因子:15.149

DOI码:10.1021/acsnano.7b02021

所属单位:Peking Univ

发表刊物:ACS Nano

摘要:Silica can be converted to silicon by magnesium reduction. Here, this classical reaction is renovated for more efficient preparation of silicon nano particles (nano-Si). By reducing the particle size of the starting materials, the reaction can be completed within 10 min by mechanical milling at ambient temperature. The obtained nano-Si with high surface reactivity are directly reacted with 1-pentanol to form an alkoxyl-functionalized hydrophobic colloid, which significantly simplifies the separation process and minimizes the loss of small Si particles. Nano-Si in 5 g scale can be obtained in one single batch with laboratory scale setups with very high yield of 89%. Utilizing the excellent dispersion in ethanol of the alkoxyl-functionalized nano-Si, surface carbon coating can be readily achieved by using ethanol soluble oligomeric phenolic resin as the precursor. The nano-Si after carbon coating exhibit excellent lithium storage performance comparable to the state of the art Si-based anode materials, featured for the high reversible capacity of 1756 mAh.g(-1) after 500 cycles at a current density of 2.1 A.g(-1). The preparation approach will effectively promote the development of nano-Si-based anode materials for lithium-ion batteries.

合写作者:Cong, Xiuqi, Wu, Xinyao, Zheng, Haidong, Ju, Wei, 邹理, Teng, Wang, Xinghua, Chang

第一作者:Zhiliang, Liu

论文类型:期刊论文

通讯作者:Xingguo, 邹理, Jie, Zheng

一级学科:0805 材料科学与工程

文献类型:J

是否译文:

发表时间:2017-06-01

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