Liquefied-Natural-Gas-Derived Vertical Carbon Layer Deposited on SiO as Cost-Effective Anode for Li-Ion Batteries

  • Ha, Jaeyun
  • Park, Heonsoo
  • Kim, Moonsu
  • Kim, Yong-Tae
  • Choi, Jinsub
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초록

Deposition of a carbon layer on silicon monoxide (SiO) is an attractive method for mitigating the inherent low electrical conductivity and significant volume expansion of SiO, which is a promising anode candidate for Li-ion batteries with high energy density. Herein, we report a method for coating SiO with a vertically grown carbon layer via chemical vapor deposition using low-cost liquefied natural gas (LNG), which is 13 times less expensive than commonly used high-purity CH4. The physical and chemical properties of the carbon-coated samples obtained using CH4 (C-SiO-CH4) and LNG (C-SiO-LNG) were identical, and their electrochemical performances were superior to that of pristine SiO. This low-cost, high-volume manufacturing method promotes the industrialization of Si-C materials for next-generation Li-ion batteries.

키워드

silicon monoxideChemical Vapor Depositioncarbon coatingliquefied natural gaslithium-ion batteryLITHIUM-IONHIGH-PERFORMANCEGRAPHENE GROWTHPETROLEUM GASDOPED CARBONNANOTUBESELECTRODENANOWIRESCOMPOSITECAPACITY
제목
Liquefied-Natural-Gas-Derived Vertical Carbon Layer Deposited on SiO as Cost-Effective Anode for Li-Ion Batteries
저자
Ha, JaeyunPark, HeonsooKim, MoonsuKim, Yong-TaeChoi, Jinsub
DOI
10.1149/1945-7111/ac4bf1
발행일
2022-02-01
유형
Article
저널명
Journal of the Electrochemical Society
169
2