Important Role of Functional Groups for Sodium Ion Intercalation in Expanded Graphite

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초록

Expanded graphite oxide (GO) has recently received a great deal of attention as a sodium ion battery anode due to its superior characteristics for sodium ion storage. Here, we report that the sodium ion intercalation behavior of expanded GO strongly depends on the amounts and ratios of different functional groups. The epoxide-rich GO shows significantly higher specific capacities than those of the hydroxyl-rich counterpart utilizing strong sodium-epoxide attractions and appropriately enlarged interlayer spacing during sodiation. The epoxide-rich GO also enables fast sodium ion transport on account of the diminishment of interlayer hydrogen bonds that could reduce the free volume. Our calculations suggest that the theoretical capacity of epoxide-only GO with a stoichiometry of Na2.5C6O3 can reach 930 mAh g(-1) which is far higher than recent experimental results as well as even those of conventional graphite materials in lithium ion batteries.

키워드

PROMISING ANODE MATERIALLITHIUM STORAGEBATTERIESCATHODEINSERTIONELECTRODESILICONCHARGEOXIDE
제목
Important Role of Functional Groups for Sodium Ion Intercalation in Expanded Graphite
저자
Kang, Yong-JuJung, Sung ChulChoi, Jang WookHan, Young-Kyu
DOI
10.1021/acs.chemmater.5b02024
발행일
2015-08
유형
Article
저널명
Chemistry of Materials
27
15
페이지
5402 ~ 5406