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用于双电层电容器的源自羧化煤焦油沥青的分级多孔碳。

Hierarchical porous carbon derived from carboxylated coal-tar pitch for electrical double-layer capacitors.

作者信息

Wang Haiyang, Zhu Hongzhe, Li Yixuan, Qi Debang, Wang Shoukai, Shen Kaihua

机构信息

State Key Laboratory of Fine Chemicals, Dalian University of Technology Dalian 116012 PR China

Sinosteel Anshan Research Institute of Thermo-Energy Company Limited Anshan 114044 PR China

出版信息

RSC Adv. 2019 Sep 17;9(50):29131-29140. doi: 10.1039/c9ra05329h. eCollection 2019 Sep 13.

Abstract

Hierarchical porous carbons have been synthesized using amphiphilic carboxylated coal-tar pitch as a precursor a simple KOH activation process. Amphiphilic carboxylated coal-tar pitch has a high content of hydrophilic carboxyl groups that enable it to be easily wetted in KOH solution and that facilitate the activation process. In the present study, the effect of the activation agent to precursor ratio on the porosity and the specific surface area was studied by nitrogen adsorption-desorption. A maximum specific surface area of 2669.1 m g was achieved with a KOH to carboxylated pitch ratio of three and this produced a structure with micropores/mesopores. Among the various hierarchical porous carbons, the sample prepared with an activation agent to precursor ratio of two exhibited the best electrochemical performance as an electrode for an electrical double-layer capacitor in a 6 M KOH electrolyte. The specific capacitance of the sample was 286 F g at a current density of 2 A g and it had a capacitance-retention ratio of 93.9%, even after 10 000 cycles. Thus, hierarchical porous carbons derived from amphiphilic-carboxylated coal-tar pitch represent a promising electrode material for electrical double-layer capacitors.

摘要

采用两亲性羧基化煤焦油沥青作为前驱体,通过简单的氢氧化钾活化工艺合成了分级多孔碳。两亲性羧基化煤焦油沥青含有高含量的亲水性羧基,使其能够在氢氧化钾溶液中易于被润湿,并促进活化过程。在本研究中,通过氮气吸附-脱附研究了活化剂与前驱体的比例对孔隙率和比表面积的影响。当氢氧化钾与羧基化沥青的比例为3时,获得了最大比表面积2669.1 m²/g,并且产生了具有微孔/介孔的结构。在各种分级多孔碳中,以活化剂与前驱体比例为2制备的样品作为6 M氢氧化钾电解液中双电层电容器的电极表现出最佳的电化学性能。该样品在电流密度为2 A/g时的比电容为286 F/g,即使在10000次循环后,其电容保持率仍为93.9%。因此,由两亲性羧基化煤焦油沥青衍生的分级多孔碳是一种很有前途的双电层电容器电极材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e2d1/9071820/42d00bf57cb9/c9ra05329h-s1.jpg

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