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Nano-porous architecture of N-doped carbon nanorods grown on graphene to enable synergetic effects of supercapacitance

机译:在石墨烯上生长的N掺杂碳纳米棒的纳米多孔结构可实现超电容的协同效应

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摘要

A novel nano-porous 3D architecture of N-doped carbon nanorods arrays grown on the surface of graphene has been prepared by carbonizing polyaniline/graphene oxide (PANI-GO) composite with PANI nanorod arrays on both sides of GO nanosheets. The obtained carbon materials are entirely composed of regularly grown carbon nanorods on graphene with height of about 100 nm and width about 30 nm, showing porous property due to the decomposition of PANI chains. The morphology of PANI grown on GO at the different growth stages was investigated to demonstrate the mechanism of the finally hierarchical architecture formation. Due to its large specific surface area and incorporation of the nitrogen groups into the carbon matrix, the obtained 3D carbon material enhances the ionic transport and the super-capacitance by synergetic effect of both double-layer and faradaic capacitances. This study provides a controllable approach to fabricate hierarchical carbon material based on conducting polymers and graphene oxide with promising applications in the high-rate electrode material of supercapacitors.
机译:通过在GO纳米片的两面用PANI纳米棒阵列碳化聚苯胺/氧化石墨烯(PANI-GO)复合材料,制备了在石墨烯表面生长的N掺杂碳纳米棒阵列的新型纳米多孔3D结构。所得的碳材料完全由石墨烯上规则生长的碳纳米棒组成,高度约100 aboutnm,宽度约30 nm,由于PANI链的分解而显示出多孔性。研究了在不同生长阶段在GO上生长的PANI的形态,以证明最终分层体系形成的机理。由于其大的比表面积和氮基团在碳基质中的结合,所获得的3D碳材料通过双层电容和法拉第电容的协同作用增强了离子迁移和超电容。这项研究提供了一种基于导电聚合物和氧化石墨烯的分层碳材料的可控方法,在超级电容器的高速电极材料中具有广阔的应用前景。

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