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An experimental study of nonlinear behaviour of capacitance in graphene/carbon nanotube hybrid films

机译:石墨烯/碳纳米管杂化膜电容非线性行为的实验研究

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摘要

Graphene (G) and graphene oxide (GO)/carbon nanotubes (CNTs) hybrid films were fabricated as high performance electrode materials by a simple water solution casting method with different contents of single-wall CNT (SWCNT), multi wall CNT (MWCNT) and multi wall CNT with hydroxyl group (MWCNT-OH). The films with MWCNTs showed a layered,udinterconnected and well entangled structure at nano-scale. With increasing CNT contents, the capacitance of the G/MWCNT and GO/MWCNT films raised almost linearly and theirudresistance reduced. G/SWCNT and GO/SWCNT films did not form layered structures leading to a very low capacitance. Nonlinear behaviour of the capacitance with voltage has been observed in the G/MWCNT and GO/MWCNT hybrid films. The length and thickness of the hybrid film have significant influences on the capacitance. The capacitance and conductivity increase with increasing the thickness and decrease with increasing the length of the hybrid films. For the application of graphene/CNT hybrid films as electrodes, these characters could be taken into account.
机译:通过简单的水溶液浇铸方法,以不同含量的单壁CNT(SWCNT),多壁CNT(MWCNT)将石墨烯(G)和氧化石墨烯(GO)/碳纳米管(CNT)杂化膜制成高性能电极材料。和具有羟基的多壁碳纳米管(MWCNT-OH)。具有MWCNT的膜在纳米级显示出层状, u互连和良好缠结的结构。随着CNT含量的增加,G / MWCNT和GO / MWCNT膜的电容几乎呈线性增加,其电阻降低。 G / SWCNT和GO / SWCNT膜未形成分层结构,导致电容非常低。在G / MWCNT和GO / MWCNT混合膜中已观察到电容随电压的非线性行为。混合膜的长度和厚度对电容有重要影响。电容和电导率随厚度的增加而增加,随混合膜长度的增加而减小。对于将石墨烯/ CNT杂化膜用作电极,可以考虑这些特性。

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