材料科学
硫化
阳极
双金属片
化学工程
锂(药物)
复合数
硫化物
碳纤维
电极
扩散
金属
硫黄
冶金
复合材料
化学
物理化学
物理
工程类
内分泌学
热力学
医学
作者
Kang Chen,Xiangzhong Kong,Xuefang Xie,Jing Chen,Xinxin Cao,Shuquan Liang,Anqiang Pan
标识
DOI:10.1002/batt.201900134
摘要
Abstract High‐capacity electrode materials have attracted tremendous attention in energy storage systems. However, the large volume expansion always causes breakdown of electrode materials and capacity fading. In this work, we report the preparation of heterogeneous Fe 3 O 4 /Fe 7 S 8 /C nanoplates with a high lithium diffusion coefficient and excellent lithium storage performance. The heterogeneous nanoplates can be derived from Fe‐MOF octahedra during the sulfidation process. As an anode for lithium‐ion batteries, the Fe 3 O 4 /Fe 7 S 8 /C composite exhibits higher specific capacity and better rate capability than Fe 3 O 4 /C and Fe 7 S 8 /C counterparts. The Fe 3 O 4 /Fe 7 S 8 /C nanoplates deliver a reversible capacity of 859 mA h g −1 after 100 cycles at 0.1 A g −1 . Even at 2 A g −1 , a capacity of 549 mA h g −1 can still be remained. The good performances are attributed to the small nanocrystallites, high surface area, and the heterogeneous phase boundaries. The strategy can be potentially applied to other metal oxide/metal sulfide composite phases or even bimetallic sulfides and bimetal oxides for high performance lithium‐ion batteries.
科研通智能强力驱动
Strongly Powered by AbleSci AI