Lattice-Confined Localized Alloying of Bi0.67tas2 Anode Enabling Ultrafast and Stable Sodium Storage Up to 150 C

CHEMICAL ENGINEERING JOURNAL(2024)

引用 0|浏览14
摘要
Bismuth is considered to be a promising anode for sodium-ion batteries due to its low voltage plateau and high volumetric capacity. However, the large volume variation during alloying/dealloying leads to electrode pulverization and performance degradation, especially under high current densities. Herein we propose a lattice-confined localized alloying reaction mechanism to solve the above issues. By chemically embedding Bi atoms in a rigid layered Ta - S host framework, the alloying reaction of Bi is spatially and kinetically confined within the Ta - S interlayer, allowing for complete recovery of the Bi 0.67 TaS 2 crystal structure after desodiation. The as-prepared Bi 0.67 TaS 2 anode exhibits superior rate performance, achieving capacities of 256 mAh g -1 at 1 C and 186 mAh g -1 at 150 C, along with remarkable long-term cycling stability for maintaining 153 mAh g -1 after 20000 cycles at 150 C. This work demonstrates that the localized alloying mechanism enabled by lattice confinement significantly contributes to both rate and cycling performance, which is expected to provide insights into electrode design for future fast-charging batteries.
更多
查看译文
关键词
Bismuth,Anode,Fast-charging,Localized alloying,Sodium ion batteries
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
0
您的评分 :

暂无评分

数据免责声明
页面数据均来自互联网公开来源、合作出版商和通过AI技术自动分析结果,我们不对页面数据的有效性、准确性、正确性、可靠性、完整性和及时性做出任何承诺和保证。若有疑问,可以通过电子邮件方式联系我们:report@aminer.cn