2023New Journal of ChemistryRequires access

Mesoporous and microporous carbons from one-pot hydrothermal products for supercapacitor electrodes: effects of porous structures and surface functionality

Siwen Wang, Zhongxing Geng, Wei Sun

Open publisher page 10 citations

Abstract

Mesoporous carbons were prepared from carbon dots via physical activation. Mesoporous carbons exhibit higher C g than high-surface-area microporous carbons, and the efficiency of the surface area for mesopores is much higher than for micropores.

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What this paper is about

Mesoporous carbons were prepared from carbon dots via physical activation. Mesoporous carbons exhibit higher C g than high-surface-area microporous carbons, and the efficiency of the surface area for mesopores is much higher than for micropores.

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Available abstract

Mesoporous carbons were prepared from carbon dots via physical activation. Mesoporous carbons exhibit higher C g than high-surface-area microporous carbons, and the efficiency of the surface area for mesopores is much higher than for micropores.

Key concepts: Microporous material, Mesoporous material, Supercapacitor, Chemistry, Hydrothermal circulation, Porosity, Carbon fibers, Specific surface area

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Mesoporous and microporous carbons from one-pot hydrothermal products for supercapacitor electrodes: effects of porous structures and surface functionality — Research Paper | ScholarLens