首页> 外文会议>Symposium on Nanophase and Nanocomposite Materials IV, Nov 26-29, 2001, Boston, Massachusetts, U.S.A. >Doping and Electrochemical Capacitance of Carbon Nanotube-Polypyrrole Composite Films
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Doping and Electrochemical Capacitance of Carbon Nanotube-Polypyrrole Composite Films

机译:碳纳米管-聚吡咯复合膜的掺杂和电化学电容

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Composite films were electrochemically synthesised via the simultaneous deposition of multiwalled nanotubes and polypyrrole, a conducting polymer. Negatively charged functional groups attached to the surface of the acid treated nanotubes enables the tubes to act as a dopant for the PPy in these films. Scanning electron microscopy, cyclic voltammetry and electrochemical impedance spectroscopy revealed that the nano-porous three-dimensional arrangement of PPy coated MWNTs in these films produced specific capacitances per mass and geometric area as high as 192 F g~(-1) and 1.0 F cm~(-2), respectively. This value of specific capacitance per geometric area exceeds that of both component materials and other carbon nanotube-conducting polymer composites. The composite films described in this report were also able to charge and discharge more than an order of magnitude faster than similarly prepared pure PPy films. The nano-porosity and small diffusion distances within the composite films, crucial to achieving the superior capacitive performance, were found to be dependent on the concentration of nanotubes and additional dopant anions in the polymerisation electrolyte, offering possibilities for tailoring of the composite structure.
机译:通过同时沉积多壁纳米管和导电聚合物聚吡咯,电化学合成了复合膜。附着在酸处理后的纳米管表面的带负电的官能团使这些管能够充当这些薄膜中PPy的掺杂剂。扫描电子显微镜,循环伏安法和电化学阻抗谱表明,这些膜中的PPy包覆的MWNTs的纳米孔三维排列产生了单位质量和几何面积的比电容,分别高达192 F g〜(-1)和1.0 F cm 〜(-2)。每几何面积的比电容值超过了组成材料和其他导电碳纳米管的聚合物复合材料的电容值。与类似制备的纯PPy薄膜相比,该报告中描述的复合薄膜还能够更快地充电和放电一个数量级。发现对于获得优异的电容性能至关重要的复合膜内的纳米孔隙度和较小的扩散距离取决于聚合电解质中纳米管的浓度和其他掺杂阴离子,这为定制复合结构提供了可能性。

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