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Fabrication of graphene foam supported carbon nanotube/polyaniline hybrids for high-performance supercapacitor applications

机译:用于高性能超级电容器的石墨烯泡沫支撑的碳纳米管/聚苯胺杂化物的制备

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摘要

A large-scale, high-powered energy storage system is crucial for addressing the energy problem. The development of high-performance materials is a key issue in realizing the grid-scale applications of energy-storage devices. In this work, we describe a simple and scalable method for fabricating hybrids (graphenepyrrole/ carbon nanotube-polyaniline (GPCP)) using graphene foam as the supporting template. Graphene-pyrrole (G-Py) aerogels are prepared via a green hydrothermal route from two-dimensional materials such as graphene sheets, while a carbon nanotube/polyaniline (CNT/PANI) composite dispersion is obtained via the in situ polymerization method. The functional nanohybrid materials of GPCP can be assembled by simply dipping the prepared G-py aerogels into the CNT/PANI dispersion. The morphology of the obtained GPCP is investigated by scanning electron microscopy (SEM) and transmission electron microscopy (TEM), which revealed that the CNT/PANI was uniformly deposited onto the surfaces of the graphene. The as-synthesized GPCP maintains its original three-dimensional hierarchical porous architecture, which favors the diffusion of the electrolyte ions into the inner region of the active materials. Such hybrid materials exhibit significant specific capacitance of up to 350 F g-1, making them promising in large-scale energy-storage device applications.
机译:大规模,高功率的储能系统对于解决能源问题至关重要。高性能材料的开发是实现储能设备在电网规模应用的关键问题。在这项工作中,我们描述了一种简单且可扩展的方法,以石墨烯泡沫为支撑模板来制造杂化材料(石墨烯吡咯/碳纳米管-聚苯胺(GPCP))。石墨烯-吡咯(G-Py)气凝胶是通过绿色水热路线由诸如石墨烯片之类的二维材料制备的,而碳纳米管/聚苯胺(CNT / PANI)复合分散体是通过原位聚合方法获得的。只需将制备的G-py气凝胶浸入CNT / PANI分散体中,即可组装GPCP的功能性纳米杂化材料。通过扫描电子显微镜(SEM)和透射电子显微镜(TEM)研究获得的GPCP的形态,这表明CNT / PANI均匀地沉积在石墨烯的表面上。合成后的GPCP保持其原始的三维分层多孔结构,这有利于电解质离子扩散到活性材料的内部区域。这种混合材料显示出高达350 F g-1的显着比电容,使其在大规模储能设备应用中很有前途。

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