You Shunzhang, Tan HuiTeng, Wei Licheng, Tan Wei, Chao Li Cheng
School of Chemical Engineering and Light Industry, Guangdong University of Technology, Guangzhou, 510006, China.
Chemistry. 2021 Aug 25;27(48):12237-12256. doi: 10.1002/chem.202100842. Epub 2021 Jul 14.
Silicon-based materials that have higher theoretical specific capacity than other conventional anodes, such as carbon materials, Li TiO materials and Sn-based materials, become a hot topic in research of lithium-ion battery (LIB). However, the low conductivity and large volume expansion of silicon-based materials hinders the commercialization of silicon-based materials. Until recent years, these issues are alleviated by the combination of carbon-based materials. In this review, the preparation of Si/C materials by different synthetic methods in the past decade is reviewed along with their respective advantages and disadvantages. In addition, Si/C materials formed by silicon and different carbon-based materials is summarized, where the influences of carbons on the electrochemical performance of silicon are emphasized. Lastly, future research direction in the material design and optimization of Si/C materials is proposed to fill the current gap in the development of efficient Si/C anode for LIBs.
与其他传统负极材料(如碳材料、LiTiO材料和锡基材料)相比,具有更高理论比容量的硅基材料成为锂离子电池(LIB)研究中的一个热门话题。然而,硅基材料的低导电性和大体积膨胀阻碍了硅基材料的商业化。直到近年来,通过碳基材料的结合,这些问题得到了缓解。在这篇综述中,回顾了过去十年中通过不同合成方法制备Si/C材料的情况以及它们各自的优缺点。此外,总结了由硅和不同碳基材料形成的Si/C材料,其中强调了碳对硅电化学性能的影响。最后,提出了Si/C材料在材料设计和优化方面的未来研究方向,以填补目前用于LIBs的高效Si/C负极开发中的空白。