Black anatase titania enabling ultra high cycling rates for rechargeable lithium batteries

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초록

In this work we report the synthesis and the characterization of black anatase TiO2. We show that this material displays a nanostructured architecture, with an electro-conducting trivalent Ti. The presence of trivalent Ti in this structure narrows the inherent high band gap energy to a semiconductor level, reaching a value as low as 1.8 eV, resulting in the very high electrical conductivity of 8 x 10(-2) S cm(-1). These extraordinary electro-conducting physical properties ensure an ultra fast Li+ insertion into and extraction from the host structure of anatase TiO2 making it a unique, high rate electrode, delivering at a 100 C-rate (20 A g(-1)) a discharge capacity of 127 mA h (g-TiO2)(-1) with approximately 86% retention during 100 charge-discharge cycles at 25 degrees C and approximately 84% retention at -20 degrees C.

키워드

TIO2INSERTIONELECTRODESTOICHIOMETRYPERFORMANCENANOTUBESSUBOXIDE
제목
Black anatase titania enabling ultra high cycling rates for rechargeable lithium batteries
저자
Myung, Seung-TaekKikuchi, MasaruYoon, Chong SeungYashiro, HitoshiKim, Sun-JaeSun, Yang KookScrosati, Bruno
DOI
10.1039/c3ee41960f
발행일
2013-09
유형
Article
저널명
Energy and Environmental Sciences
6
9
페이지
2609 ~ 2614