Rational design of silicon-based composites for high-energy storage devices

  • Lee, Jung Kyoo
  • Oh, Changil
  • Kim, Nahyeon
  • Hwang, Jang-Yeon
  • Sun, Yang-Kook
Citations

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192
Citations

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203

초록

Silicon-based composites are very promising anode materials for boosting the energy density of lithium-ion batteries (LIBs). These silicon-based anodes can also replace the dendrite forming lithium metal anodes in lithium metal-free Li–O2 and Li–S batteries, which can offer energy content far beyond that of current LIBs. However, it is challenging to design silicon-based materials for use as anodes in real energy storage devices. In this review, we discuss how to boost the energy content of LIBs, the pros and cons of silicon-based anodes, and challenges associated with silicon-based anodes. A major focus of this review is on the rational design of silicon-based composite anodes to address the outstanding issues. In addition, high energy LIBs and Li–S batteries that employ silicon-based anodes are introduced and discussed.

키워드

LI-ION BATTERIESHIGH-CAPACITY ANODESLITHIUM-IONFLUOROETHYLENE CARBONATECATHODE MATERIALSPRACTICAL APPLICATIONNEGATIVE ELECTRODESSULFUR BATTERIESSI NANOPARTICLESRECENT PROGRESS
제목
Rational design of silicon-based composites for high-energy storage devices
저자
Lee, Jung KyooOh, ChangilKim, NahyeonHwang, Jang-YeonSun, Yang-Kook
DOI
10.1039/c6ta00265j
발행일
2016-04
유형
Review
저널명
Journal of Materials Chemistry A
4
15
페이지
5366 ~ 5384

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