Dual-carbon-confined hydrangea-like SiO cluster for high-performance and stable lithium ion batteries

  • Lim, Kyungmin
  • Park, Heonsoo
  • Ha, Jaeyun
  • Kim, Yong-Tae
  • Choi, Jinsub
Citations

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초록

Silicon monoxide (SiO) is regarded as a strong candidate for next-generation lithium ion battery anode materials because of its high energy density, low cost, and relatively low volume expansion compared to silicon (Si). However, the intrinsic low electrical conductivity and non-negligible volume expansion limit the practical application of SiO. Herein, dual-carbon-confined hydrangea-like SiO clusters are developed via chemical vapor deposition (CVD) growth, followed by a spray drying approach as a novel anode material for high-performance and stable lithium ion batteries. The evolution of the buffer layer along with sufficient void spaces to alleviate the volume expansion, besides the increased electrical conductivity, contributes to the improved discharge capacity of 1071 mAh g(-1) after 200 cycles at a high current density of 0.75 A g(-1) with a low expansion ratio of 9%. The distinct dual-carbon-confined hydrangea-like structure leads to synergistic improvements in battery performance, which will pave the way for promoting the commercial application of silicon-based anode materials. (C) 2021 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights

키워드

Lithium ion batteriesChemical vapor depositionSpray dryingSilicon monoxide/carbon composite clustersVolume expansionGRAPHENE OXIDEANODE MATERIALHYBRID NANOSTRUCTURESCOMPOSITESILICONELECTRODECAPACITY
제목
Dual-carbon-confined hydrangea-like SiO cluster for high-performance and stable lithium ion batteries
저자
Lim, KyungminPark, HeonsooHa, JaeyunKim, Yong-TaeChoi, Jinsub
DOI
10.1016/j.jiec.2021.05.043
발행일
2021-09-25
유형
Article
저널명
Journal of Industrial and Engineering Chemistry
101
페이지
397 ~ 404