节点文献

AA-stacked borophene–graphene bilayer as an anode material for alkali-metal ion batteries with a superhigh capacity

  • 推荐 CAJ下载
  • PDF下载
  • 不支持迅雷等下载工具,请取消加速工具后下载。

【作者】 梁艺博刘钊王静刘英

【Author】 Yi-Bo Liang;Zhao Liu;Jing Wang;Ying Liu;Department of Physics and Hebei Advanced Thin Film Laboratory, Hebei Normal University;National Key Laboratory for Materials Simulation and Design;

【通讯作者】 王静;

【机构】 Department of Physics and Hebei Advanced Thin Film Laboratory, Hebei Normal UniversityNational Key Laboratory for Materials Simulation and Design

【摘要】 As the lightest two-dimensional material, monolayer borophene exhibits great potential as electrode materials, but it suffers from stability issues in the free-standing form. Here, the striped-borophene and graphene bilayer(sB/Gr) is found to be a high-performance anode material for rechargeable alkali-metal ion batteries. The first-principles results show that all the three alkali-metal atoms, Li, Na, and K, can be strongly adsorbed on sB/Gr with ultra-low diffusion barriers than that on pristine borophene/graphene, indicating good charge-discharge rates. Remarkably, high storage capacities are proposed for LIBs(1880 mA·h/g), NIBs(1648 mA·h/g), and KIBs(470 m A·h/g) with relatively small lattice change rate(< 2.9%) in the process of alkali-metal atoms intercalations. These intriguing features of sB/Gr make it an excellent choice for batteries.

【Abstract】 As the lightest two-dimensional material, monolayer borophene exhibits great potential as electrode materials, but it suffers from stability issues in the free-standing form. Here, the striped-borophene and graphene bilayer(sB/Gr) is found to be a high-performance anode material for rechargeable alkali-metal ion batteries. The first-principles results show that all the three alkali-metal atoms, Li, Na, and K, can be strongly adsorbed on sB/Gr with ultra-low diffusion barriers than that on pristine borophene/graphene, indicating good charge-discharge rates. Remarkably, high storage capacities are proposed for LIBs(1880 mA·h/g), NIBs(1648 mA·h/g), and KIBs(470 m A·h/g) with relatively small lattice change rate(< 2.9%) in the process of alkali-metal atoms intercalations. These intriguing features of sB/Gr make it an excellent choice for batteries.

【基金】 Project supported by the National Natural Science Foundation of China (Grant No. 12174084);the Scientific and Technological Research Foundation of Hebei Province, China (Grant No. ZD2021065);the Key Program of Natural Science Foundation of Hebei Province, China (Grant No. A2021205024)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2022年11期
  • 【分类号】TM912
节点文献中: 

本文链接的文献网络图示:

本文的引文网络