Achieving Cycling Stability in Anode of Lithium-Ion Batteries with Silicon-Embedded Titanium Oxynitride Microsphere

  • Wang, Sung Eun
  • Kim, DoHoon
  • Kim, Min Ji
  • Kim, Jung Hyun
  • Kang, Yun Chan
  • 외 4명
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초록

Surface coating approaches for silicon (Si) have demonstrated potential for use as anodes in lithium-ion batteries (LIBs) to address the large volume change and low conductivity of Si. However, the practical application of these approaches remains a challenge because they do not effectively accommodate the pulverization of Si during cycling or require complex processes. Herein, Si-embedded titanium oxynitride (Si-TiON) was proposed and successfully fabricated using a spray-drying process. TiON can be uniformly coated on the Si surface via self-assembly, which can enhance the Si utilization and electrode stability. This is because TiON exhibits high mechanical strength and electrical conductivity, allowing it to act as a rigid and electrically conductive matrix. As a result, the Si-TiON electrodes delivered an initial reversible capacity of 1663 mA h g(-1) with remarkably enhanced capacity retention and rate performance.

키워드

lithium-ion batteriessilicon anodestitanium oxynitridesspray-dryingPROMISING ANODENANOPARTICLESPERFORMANCECOMPOSITENANOPOWDERSPARTICLESFRACTURETIO2PAN
제목
Achieving Cycling Stability in Anode of Lithium-Ion Batteries with Silicon-Embedded Titanium Oxynitride Microsphere
저자
Wang, Sung EunKim, DoHoonKim, Min JiKim, Jung HyunKang, Yun ChanRoh, Kwang ChulChoi, JunghyunLee, Hyung WooJung, Dae Soo
DOI
10.3390/nano13010132
발행일
2023-01-01
유형
Article
저널명
Nanomaterials
13
1