Redox-crosslinked graphene networks with enhanced electrochemical capacitance

Wei Huang, Hua Zhang, Zhipeng Sun, Xiehong Cao, Yanlong Wang, Ting Yu, Linghai Xie, Jian Jiang, Wei Ai, Zhuzhu Du, Xingjue Wang
2014-07-03

SCID:  54.1/zd8wwfhe
A facile and effective method for the synthesis of redox-crosslinked graphene networks is reported. This method involves the polyphosphoric acid-catalyzed cyclization reaction between the carboxylic groups on graphene oxide and the hydroxyl, amino groups on 4,6-diaminoresorcinol hydrochloride, as well as a subsequent reduction process. The obtained benzobisoxazole-crosslinked graphene networks (BBO-GNs) show a high BET surface area of 357 m2 g−1 in comparison with the reduced graphene oxide (rGO) (117 m2 g−1), due to the presence of benzobisoxazole groups that prevent the irreversible restacking or agglomeration of graphene sheets during the reduction. Another immediate and more practically meaningful benefit of introducing benzobisoxazole groups is that such functional groups could effectively provide an extra contributing channel to the specific capacity by pseudocapacitance. As a consequence, the improved performance such as significantly enhanced electrochemical capacitance is clearly demonstrated in the supercapacitor with the electrodes of BBO-GNs.
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2014-07-03
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Wei Huang
Hua Zhang
Zhipeng Sun
Xiehong Cao
Yanlong Wang
Ting Yu
Linghai Xie
Jian Jiang
Wei Ai
Zhuzhu Du
Xingjue Wang
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