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层状多孔碳源于 PolyHIPE 用于超级电容器和脱盐应用

Hierarchically Porous Carbon Derived from PolyHIPE for Supercapacitor and Deionization Applications.

机构信息

College of Materials, Xiamen University , Xiamen 361005, China.

Shanghai Key Laboratory of Magnetic Resonance, School of Physics and Materials Science, East China Normal University , Shanghai 200062, China.

出版信息

Langmuir. 2017 Nov 21;33(46):13364-13375. doi: 10.1021/acs.langmuir.7b03175. Epub 2017 Nov 7.

Abstract

Hierarchically porous carbon (HPC) materials with interconnected porous texture are produced from a porous poly(divinylbenzene) precursor, which is synthesized by polymerizing high-internal-phase emulsions. After carbonation, the macroporous structures of the poly(divinylbenzene) precursor are preserved and enormous micro-/mesopores via carbonation with KOH are produced, resulting in an interconnected hierarchically porous network. The prepared HPC has a maximum specific surface area of 2189 m g. The electrode materials for supercapacitors and capacitive deionization devices employing the formed HPC exhibit a high specific capacity of 88 mA h g through a voltage range of 1 V (319 F g at 1 A g) and a superior electrosorption capacity of 21.3 mg g in 500 mg L NaCl solution. The excellent capacitive performance could be ascribed to the combination of high specific surface area and favorable hierarchically porous structure.

摘要

具有互连通孔结构的分级多孔碳(HPC)材料由多孔聚(二乙烯基苯)前驱体制备而成,该前驱体是通过聚合高内相乳液合成的。碳化后,聚(二乙烯基苯)前驱体的大孔结构得以保留,并通过与 KOH 碳化产生大量的微孔/介孔,从而形成互连通的分级多孔网络。所制备的 HPC 的最大比表面积为 2189 m2/g。超级电容器和电容去离子装置的电极材料在 1 V 的电压范围内(1 A/g 时为 319 F/g)表现出 88 mA h/g 的高比容量,在 500 mg/L NaCl 溶液中具有 21.3 mg/g 的优异电吸附容量。优异的电容性能可归因于高比表面积和有利的分级多孔结构的结合。

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