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Raman and electrochemical impedance studies of sol-gel titanium oxide and single walled carbon nanotubes composite films

机译:溶胶-凝胶氧化钛与单壁碳纳米管复合膜的拉曼和电化学阻抗研究

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Titanium oxide grown by a sol-gel route on single-walled carbon nanotubes was studied by Raman and Electrochemical Impedance techniques and compared with mixtures obtained by mechanical grinding. In spite of the superior dispersion of single-walled carbon nanotubes bundles in sol-gel composites, the lost of the small-diameter carbon nanotubes in the oxidizing sol-gel bath was inferred from their Raman spectra and the lower capacitive current of the voltammograms in 0.1 M H2SO4. We proposed proton electrosorption as the main charge storage mechanism for sol-gel composites, favoured by the hydroxylation and n-type conductivity of the oxide, while electrodes based on mixtures were dominated by double-layer charging, developing some pseudocapacitance with potential cycling due to the reversible oxidation of carbon nanotubes. Comparsion with TiO2/Carbon Blacks composites shows the effective role of single-walled carbon nanotubes as templates to control the mesoporous nature of sol-gel composite electrodes.
机译:通过拉曼和电化学阻抗技术研究了通过溶胶-凝胶法在单壁碳纳米管上生长的二氧化钛,并将其与通过机械研磨获得的混合物进行了比较。尽管单壁碳纳米管束在溶胶-凝胶复合物中具有优异的分散性,但从氧化溶胶-凝胶浴中的小直径碳纳米管的损失可从它们的拉曼光谱和较低的伏安图伏安电流推断出0.1 M硫酸。我们提出质子电吸附作为溶胶-凝胶复合材料的主要电荷存储机理,受氧化物的羟基化和n型电导率的影响,而基于混合物的电极则以双层电荷为主,由于电势的循环而产生了一些假电容碳纳米管的可逆氧化。与TiO2 /碳黑复合材料的比较表明,单壁碳纳米管作为模板可有效控制溶胶-凝胶复合电极的介孔性质。

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