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Covalently functionalized single-walled carbon nanotubes and graphene composite electrodes for pseudocapacitor application.

机译:共价官能化的单壁碳纳米管和石墨烯复合电极,用于假偶联机应用。

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The use of carbon-based materials in electrochemical double-layer supercapacitors (EDLC) is currently being the focus of much research. Even though activated carbon (AC) is the state of the art electrode material, AC suffers from some drawbacks including its limited electrical conductivity, the need for a binder to ensure the expected electrode cohesion and its limited accessibility of its pores to solvated ions of the electrolyte. Owing to their unique physical properties, carbon nanotubes (CNTs) or graphene could overcome these drawbacks. It has been demonstrated that high specific capacitance could be obtained when the carbon accessible surface area of the electrode was finely tailored by using graphene combined with other carbonaceous nanoparticles such as CNTs~(12). In this work, to further increase the specific capacitance of the electrode, we have covalently grafted onto the surface of single-walled carbon nanotubes (SWCNTs), exfoliated graphite or graphene oxide (GO), anthraquinone (AQ) derivatives which are electrochemically active materials. The modified SWCNTs and graphene-like materials have been characterized by Raman spectroscopy. X-ray photoemission and cyclic voltammetry. Then suspensions based on mixtures of modified SWCNTs and modified graphene-like materials have been prepared and transformed into electrodes either by spray coating or by filtration. These electrodes have been characterized by SEM and by cyclic voltammetry in 0.1M H_2SO_4 electrolyte.
机译:电化学双层超级电容器(EDLC)中使用碳基材料目前是多重研究的重点。尽管活性炭(AC)是最先进的电极材料,但AC患有一些缺点,包括其导电性有限,需要粘合剂,以确保预期电极内聚力及其孔隙的预期可达性与其溶解的离子有限电解质。由于其独特的物理性质,碳纳米管(CNT)或石墨烯可以克服这些缺点。已经证明,当通过使用石墨烯与其他碳质纳米颗粒如CNTS〜(12)结合电极的可碳接近的表面细分,可以获得高比电容。在这项工作中,为了进一步增加电极的特定电容,我们已经共价接枝到单壁碳纳米管(SWCNTS),剥离石墨或石墨烯(GO),蒽醌(AQ)衍生物的表面上,所述衍生物是电化学活性材料的。通过拉曼光谱表征改性的SWCNT和石墨烯样材料。 X射线照片和循环伏安。然后通过喷涂或通过过滤制备基于改性的SWCNT和改性石墨烯样材料的混合物和改性石墨烯样材料的悬浮液。这些电极已经在0.1M H_2SO_4电解质中的SEM和循环伏安法的特征。

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