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Design of graphitic carbon nitride nanowires with captured mesoporous carbon spheres for EDLC electrode materials

机译:用于EDLC电极材料捕获介孔碳球的石墨氮化物纳米线的设计

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摘要

Graphitic carbon nitride/mesoporous carbon sphere composites were successfully synthesized using a simple, three-step treatment, and the effects of the mesoporous carbon sphere (MPCS) content on the electrochemical properties of the composites were studied. The MPCSs were homogeneously captured and dispersed on the prepared graphitic carbon nitride (GCN), forming a GCN/MPCS nanocomposite structure. These composite materials exhibited better electrochemical properties than previously reported electric double-layer capacitor (EDLC) materials, such as carbon nanotubes, graphene, activated carbon, and carbon spheres. The addition of a small amount of mesoporous carbon spheres, typically 1:2 by weight (GCN/MPCS), to form GCN/MPCS(2) resulted in an excellent specific charge capacity of 352.44Fg(-1) at a scan rate of 5mVs(-1). These results indicate the potential of the composite for the development of highly capacitive energy storage devices with practical applications.
机译:使用简单的三步处理成功合成了石墨碳氮化物/介孔碳球复合材料,研究了介孔碳球(MPCs)含量对复合材料的电化学性质的影响。 MPCSS均匀地捕获并分散在制备的石墨氮化物(GCN)上,形成GCN / MPC纳米复合材料结构。 这些复合材料表现出比先前报告的电化学性能(EDLC)材料(例如碳纳米管,石墨烯,活性炭和碳球)更好的电化学性质。 加入少量的介孔碳球,通常为1:2重量(GCN / MPC),形成GCN / MPC(2),以扫描速率为352.44Fg(-1)的优异比电荷容量 5mvs(-1)。 这些结果表明了具有实际应用的高电容能量存储装置的复合材料的潜力。

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