材料科学
阳极
硅
锂(药物)
碳纤维
化学工程
烧结
涂层
电化学
锂离子电池
纳米颗粒
化学计量学
氯化物
复合数
电池(电)
电极
纳米技术
复合材料
冶金
有机化学
化学
医学
工程类
量子力学
功率(物理)
物理化学
物理
内分泌学
作者
Shuo Zhou,Fang Chen,Xiangyun Song,Gao Liu
标识
DOI:10.1002/batt.202000193
摘要
Abstract A highly ordered carbon structure based on polyvinylidene chloride precursor has been developed to host silicon nanoparticles. The stoichiometric ratio of sacrificial H and Cl elements facilitated full utilization of the carbon content of the precursor that produced robust carbon coatings on silicon nanoparticles with excellent mechanic properties and electrochemical stabilities. The optimal sintering temperature and carbon content have been investigated. When evaluated as the anode of a lithium‐ion battery (LIB), the Si : C 1 : 2 composite sintered at 800 °C (SiC12‐800) provided excellent capacity retention of 85 % at 0.1 C after 50 cycles with an enhanced CE, which reached 99 % only after 10 cycles. The SiC12‐800 electrode maintained a specific capacity of 709.2 mAh/g after 300 cycles at 0.3 C, and delivered a high rate performance of 737.9 mAh/g and 485.6 mAh/g at 5 C and 10 C, respectively. The results indicate that polymer precursors with stoichiometric ratio of sacrificial elements have high potential for generating highly robust carbon coatings for silicon anodes in high energy density LIBs.
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