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首页> 外文期刊>Physica status solidi, B. Basic research >Preparation and selected properties of a composite of the C-60-Pd conducting polymer and single-wall carbon nanotubes
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Preparation and selected properties of a composite of the C-60-Pd conducting polymer and single-wall carbon nanotubes

机译:C-60-Pd导电聚合物与单壁碳纳米管复合材料的制备及所选性能

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A thin film of a new composite consisting of the redox conductive fullerene-palladium polymer (C-60-Pd) and single-wall carbon nanotubes, non-covalently functionalized with 1-pyrenebutiric acid (pyr-SWCNTs), was electrochemically prepared in the acetonitrile : toluene (I : 4, v : v) solution containing C-60, pyr-SWCNTs, and palladium acetate, Pd(ac)(2), under multi-scan cyclic voltammetry (cv) conditions. A tetra(n-butyl)ammonium salt, vis. 0.1 M (TBA)ClO4 or (TBA)PF6, was used as the supporting electrolyte. Electrochemical and visco-elastic properties of the composite film were investigated by simultaneous cv and piezoelectric microgravimetry (pm) measurements. The Raman spectra indicated that pyr-SWCNTs were incorporated in the film during preparation of the composite by electropolymerization. Mass of the deposited composite film was determined by pin using an electrochemical quartz crystal microbalance (EQCM). The EQCM also allowed us for simultaneous recording, in different potential ranges, the current, resonant frequency changes, and dynamic resistance changes vs. potential, of a quartz crystal resonator with its electrode coated by the composite film. The performed EQCM experiments revealed that both films were electrochemically active at potentials more negative than ca. -0.5 V. However, the presence of pyr-SWCNTs in the film increased the electrode capacitance, as manifested by the increase of both the cv, cathodic and anodic current. Moreover, the presence of pyr-SWCNTs in the C-60-Pd polymer improved its visco-elastic properties for the potentials more negative than -0.9 V vs. Ag/AgCl by making the C-60-Pd/pyr-SWCNTs film more rigid than the pristine C-60-Pd film, From the highest slopes of the rising portions of the cathodic currents in the range ca. -0.4 to -0.6 V the redox conductivity values were determined. This conductivity for the C60-Pd/pyr-SWCNTs composite film was higher than that for the genuine C-60-Pd film. (C) 2008 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
机译:在其中用电化学方法制备了由氧化还原导电富勒烯-钯聚合物(C-60-Pd)和单壁碳纳米管组成的新型复合材料薄膜,该碳纳米管被1-吡咯丁酸(pyr-SWCNTs)非共价官能化。乙腈:甲苯(I:4,v:v)溶液,包含C-60,pyr-SWCNT和乙酸钯Pd(ac)(2),在多扫描循环伏安(cv)条件下。相对于四(正丁基)铵盐。使用0.1 M(TBA)ClO4或(TBA)PF6作为支持电解质。通过同时进行cv和压电微重力(pm)测量研究了复合膜的电化学和粘弹性。拉曼光谱表明,在通过电聚合制备复合材料的过程中,将pyr-SWCNTs掺入了薄膜中。使用电化学石英晶体微量天平(EQCM)通过销钉测定沉积的复合膜的质量。 EQCM还允许我们同时记录其电极被复合膜覆盖的石英晶体谐振器在不同电势范围内的电流,谐振频率变化以及动态电阻随电势的变化。进行的EQCM实验表明,两个膜均具有比ca负电势更大的电化学活性。 -0.5V。但是,薄膜中存在pyr-SWCNT会增加电极电容,这由cv,阴极和阳极电流的增加所证明。此外,通过使C-60-Pd / pyr-SWCNTs薄膜更厚,C-60-Pd聚合物中存在pyr-SWCNTs改善了其粘弹性能,使电位比-Ag / AgCl负-0.9V。比原始的C-60-Pd膜更坚硬,从阴极电流上升部分的最高斜率开始,范围约为ca。测定-0.4至-0.6V的氧化还原电导率值。 C60-Pd / pyr-SWCNTs复合膜的电导率高于真正的C-60-Pd膜的电导率。 (C)2008 WILEY-VCH Verlag GmbH&Co.KGaA,Weinheim

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