How can we describe the adsorption of quinones on activated carbon surfaces?

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초록

Quinone molecules have been widely studied as effective redox-active species for supercapacitors, but an understanding of the adsorption of quinones on activated carbon electrodes is very scarce. A hydroquinone molecule does not form a strong bond on pristine graphene, Stone-Wales defect, and double-vacancy surfaces, but it forms strong adsorption on single-vacancy surface. We demonstrate from first-principles calculations for various quinones that selecting an appropriate surface model is crucial in conducting a proper comparative study of the adsorption of quinone molecules. We suggest the single-vacancy graphene surface as a useful model for studying the adsorption of quinone molecules on an activated carbon electrode. (C) 2016 Elsevier B.V. All rights reserved.

키워드

Activated carbonQuinoneSupercapacitorAdsorptionDensity functional calculationGENERALIZED GRADIENT APPROXIMATIONHIGH-ENERGY-DENSITYFUNCTIONAL-GROUPSSUPERCAPACITORSANTHRAQUINONEPERFORMANCEELECTROLYTESELECTRODESCAPACITORSGRAPHENE
제목
How can we describe the adsorption of quinones on activated carbon surfaces?
저자
Kim, Hyung-JinHan, Young-Kyu
DOI
10.1016/j.cap.2016.08.009
발행일
2016-10
유형
Article
저널명
Current Applied Physics
16
10
페이지
1437 ~ 1441