Dual yolk-shell structure of carbon and silica-coated silicon for high-performance lithium-ion batteries

材料科学 空隙(复合材料) 氢氟酸 蚀刻(微加工) 化学工程 纳米技术 碳纤维 复合材料 图层(电子) 光电子学 复合数 工程类 冶金
作者
Linyu Yang,H. Z. Li,Juan Liu,Ziqi Sun,Sangsang Tang,Ming Lei
出处
期刊:Scientific Reports [Nature Portfolio]
卷期号:5 (1) 被引量:204
标识
DOI:10.1038/srep10908
摘要

Silicon batteries have attracted much attention in recent years due to their high theoretical capacity, although a rapid capacity fade is normally observed, attributed mainly to volume expansion during lithiation. Here, we report for the first time successful synthesis of Si/void/SiO2/void/C nanostructures. The synthesis strategy only involves selective etching of SiO2 in Si/SiO2/C structures with hydrofluoric acid solution. Compared with reported results, such novel structures include a hard SiO2-coated layer, a conductive carbon-coated layer, and two internal void spaces. In the structures, the carbon can enhance conductivity, the SiO2 layer has mechanically strong qualities, and the two internal void spaces can confine and accommodate volume expansion of silicon during lithiation. Therefore, these specially designed dual yolk-shell structures exhibit a stable and high capacity of 956 mA h g(-1) after 430 cycles with capacity retention of 83%, while the capacity of Si/C core-shell structures rapidly decreases in the first ten cycles under the same experimental conditions. The novel dual yolk-shell structures developed for Si can also be extended to other battery materials that undergo large volume changes.

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