Surface modification of cathode materials from nano- to microscale for rechargeable lithium-ion batteries

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초록

The present concern with global warming urgently requires a large increase in the energy share provided by green, renewable energy sources, as well as massive commercialization of sustainable vehicles. The widespread availability of reliable energy storage systems and highly efficient lithium batteries can, in principle, meet this need. For example, many individuals already own at least one lithium-ion battery portable device, such as a cellular phone, MP3 player, digital camera, or laptop computer. Hybrid electric vehicles and full electric vehicles will sooner or later be marketed with lithium-ion batteries. However, to acquire an established role in the commercial sector, lithium-ion batteries must be improved with regard to energy density, cost, and particularly, safety. Further development of electrode materials, especially the cathode active materials, is important to satisfy the above requirements. The easiest route to cathode improvement is to modify the cathode surface. This article describes recent advances in cathode active materials with surface modification from the nano-to microscale.

키워드

POSITIVE ELECTRODE MATERIALCOATED LINI0.5MN1.5O4 SPINELELEVATED-TEMPERATURE PERFORMANCEX-RAY-DIFFRACTIONELECTROCHEMICAL PROPERTIESLICOO2 CATHODELIMN2O4 SPINELHIGH-ENERGYLIIMPROVEMENT
제목
Surface modification of cathode materials from nano- to microscale for rechargeable lithium-ion batteries
저자
Myung, Seung-TaekAmine, KhalilSun, Yang-Kook
DOI
10.1039/c0jm00508h
발행일
2010-09
유형
Article
저널명
Journal of Materials Chemistry
20
34
페이지
7074 ~ 7095