Chemically engineered alloy anode enabling fully reversible conversion reaction: design of a C-Sn-bonded aerofilm anode

Citations

WEB OF SCIENCE

6
Citations

SCOPUS

6

초록

Using conversion-type materials to design freestanding electrodes is a promising strategy enabling high energy density of batteries, minimal consumption of inactive materials, and a high theoretical capacity. However, their use is not practical due to high irreversibility and excessive volume expansion limit, and also, the complex processes that are required to manufacture binder-free electrodes. Herein, we report a strategy for maximizing the battery reversibility of binderless freestanding electrodes using conversion-type SnO2 quantum particles. The C-Sn bond between the active materials and the graphene conductor immobilizes the redox reaction sites, enabling fast charge transfer and reversible charge/discharge, and the morphological nature of the porous aerofilm satisfies the fast ion access and reversible volume recovery. Unlike typical conversion-type electrodes that undergo huge capacity fading, our freestanding aerofilm SnO2 electrode maintains its capacity within 3% reduction, showing a highly reversible capacity of 1301 mA h g(-1). This study provides critical strategies enabling an acceleration of the successful realization of next-generation reversible batteries.

키워드

HIGH-PERFORMANCE ANODELITHIUM-IONSNO2/GRAPHENE COMPOSITESTORAGEFABRICATIONELECTRODESSTABILITYPAPEROXIDE
제목
Chemically engineered alloy anode enabling fully reversible conversion reaction: design of a C-Sn-bonded aerofilm anode
저자
Kim, Sun-SikSenthil, ChenrayanJung, Sung MiJung, Hyun Young
DOI
10.1039/d1ta09716d
발행일
2022-02
유형
Article
저널명
Journal of Materials Chemistry A
10
7
페이지
3595 ~ 3604