Nanostructured cathode materials for rechargeable lithium batteries

Citations

WEB OF SCIENCE

103
Citations

SCOPUS

111

초록

The prospect of drastic climate change and the ceaseless fluctuation of fossil fuel prices provide motivation to reduce the use of fossil fuels and to find new energy conversion and storage systems that are able to limit carbon dioxide generation. Among known systems, lithium-ion batteries are recognized as the most appropriate energy storage system because of their high energy density and thus space saving in applications. Introduction of nanotechnology to electrode material is beneficial to improve the resulting electrode performances such as capacity, its retention, and rate capability. The nanostructure is highly available not only when used alone but also is more highlighted when harmonized in forms of core shell structure and composites with carbon nanotubes, graphene or reduced graphene oxides. This review covers syntheses and electrochemical properties of nanoscale, nanosized, and nanostructured cathode materials for rechargeable lithium batteries.

키워드

NanosizeNanoscaleNanostructureCathodeLithiumBatteriesPOSITIVE-ELECTRODE MATERIALSSPINEL LIMN2O4 NANOWIRESNICKEL-MANGANESE-OXIDESELECTROCHEMICAL PROPERTIESHIGH-PERFORMANCEION BATTERYHIGH-POWERHYDROTHERMAL SYNTHESISCOMPOSITE ELECTRODESCYCLING PERFORMANCE
제목
Nanostructured cathode materials for rechargeable lithium batteries
저자
Myung, Seung-TaekAmine, KhalilSun, Yang Kook
DOI
10.1016/j.jpowsour.2015.02.119
발행일
2015-06
유형
Review
저널명
Journal of Power Sources
283
페이지
219 ~ 236