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黄驰

个人信息Personal information

  • 博士生导师
  • 硕士生导师
  • 教师拼音名称:Huang Chi
  • 电子邮箱:
  • 所在单位:化学与分子科学学院
  • 职务:教授
  • 学历:研究生毕业
  • 办公地点:化学与分子科学学院
  • 性别:男
  • 联系方式:+86-27-68754226
  • 在职信息:在职
  • 毕业院校:武汉大学
  • 所属院系:化学与分子科学学院

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论文成果

Hemimorphite /C interface layer with dual-effect methodically redistricted Zn2+ deposition behavior for dendrite-free zinc metal anodes

发表时间:2023-12-16 点击次数:

影响因子:20.4

DOI码:10.1016/j.ensm.2023.102937

发表刊物:Energy Storage Materials

关键字:Hemimorphite;Dendrites; Uniform Zn plating; Zn anodes

摘要:The uneven distribution of Zn2+ gradient and electric fields at the electrolyte–anode interface are the two “pain points” that seriously limit the lifespan of AZIBs. Traditional artificial SEI layers targeted one single “pain points” cannot simultaneously balance the Zn2+ gradient and electric fields. Herein, hemimorphite/C interface layer, sandwich structure Zn4(Si2O7)(OH)2·H2O@rGO@Zn4(Si2O7)(OH)2·H2O (rGO@ZnSi) prepared by in-situ growth strategy is provided as “dual-effect” to modulate Zn2+ gradient and electric fields regulation. The rGO@ZnSi is demonstrated with the zincophilicity due to Zn-ion-conducive transport channel about 5Å and boosted electroconductibility properties by in situ growth rGO. The internal rGO acts as conductive core, facilitating the rapid transfer of electrons along the two-dimensional plane, thus significantly enhancing the conductivity of hemimorphite. Additionally, it opens up a new territory for Zn2+ reduction process, which would enhance the reversibility of Zn anode, mitigate the polarization and promote electrochemical performance. The Zn//Zn battery with the modified rGO@ZnSi SEI exhibits an ultra-long and outstanding cycling stability of up to 170 days. Benefitting from the rGO@ZnSi SEI, the rGO@ZnSi-Zn//V2O5 full battery delivers a high discharge capacity and long cycle performance. The “dual-effect” rGO@ZnSi SEI escorts for the dendrite-free zinc metal anodes with lifetime extension, ultra-high rate performance and cost-effectiveness.

合写作者:Peng Yan,Wang Yang,Wang Haowei,Jiang Chengming,Meng Changgong

论文类型:期刊论文

通讯作者:Huang Chi*,Zhang Yifu*

文献类型:J

卷号:62

页面范围:102937

是否译文:否

发表时间:2023-09-01

收录刊物:SCI

发布期刊链接:https://doi.org/10.1016/j.ensm.2023.102937