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酰胺基团连接的石墨烯-聚苯胺纳米纤维杂化材料的制备及其在超级电容器中的应用。

Preparation of an amide group-connected graphene-polyaniline nanofiber hybrid and its application in supercapacitors.

机构信息

School of Materials Science and Engineering, Beihang University , 100191, Beijing, China.

出版信息

ACS Appl Mater Interfaces. 2012 Jun 27;4(6):2870-6. doi: 10.1021/am300640y. Epub 2012 Jun 18.

Abstract

Polyaniline (PANI) nanofiber is grafted onto graphene to obtain a novel graphene-polyaniline (GP) hybrid. Graphene is activated using SOCl2 and reacts with PANI to form an amide group that intimately connects graphene and PANI. The existence of the amide group and its anchoring effect in the GP hybrid are confirmed and characterized by SEM, TEM, FT-IR, Raman, XPS and quantum chemistry analyses. Electrochemical tests reveal that the GP hybrid has high capacitance performances of 579.8 and 361.9 F g(-1) at current densities of 0.3 and 1 A g(-1). These values indicate superiority to materials interacted by van der Waals force. Long-term charge/discharge tests at high current densities show that the GP hybrid preserves 96% of its initial capacitance, demonstrating good electrochemical stability. The improved electrochemical performance suggests promising application of the GP hybrid in high-performance supercapacitors.

摘要

聚苯胺(PANI)纳米纤维接枝到石墨烯上,得到一种新型的石墨烯-聚苯胺(GP)杂化材料。使用 SOCl2 对石墨烯进行活化,然后与 PANI 反应形成酰胺基团,使石墨烯和 PANI 紧密结合。通过 SEM、TEM、FT-IR、拉曼、XPS 和量子化学分析证实并表征了酰胺基团的存在及其在 GP 杂化材料中的锚固作用。电化学测试表明,GP 杂化材料在电流密度为 0.3 和 1 A g(-1) 时具有 579.8 和 361.9 F g(-1) 的高电容性能。这些值表明其优于范德华力相互作用的材料。在高电流密度下进行的长期充放电测试表明,GP 杂化材料保留了其初始电容的 96%,表现出良好的电化学稳定性。改进的电化学性能表明,GP 杂化材料在高性能超级电容器中有很好的应用前景。

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