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Analysis of photocurrents and capacitance at TiO2 nanotubes/polyaniline hybrid composites synthetized through electroreduction of aryldiazonium salt

机译:芳基重氮盐电还原合成TiO2纳米管/聚苯胺杂化复合材料的光电流和电容分析

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摘要

TiO2 nanotube–polyaniline hybrid composites were synthesized by a multi-step electrochemical procedure as follows: (1) electrochemical oxidation of Ti foil to obtain TiO2 ordered nanotubular electrodes, (2) functionalization of TiO2 by electroreduction of 4-nitrobenzendiazonium salt, (3) electrochemical reduction of the nitro group to amine, (4) galvanostatic electropolymerization of aniline onto the surface of the aminophenyl-modified TiO2 electrode. Samples were also prepared by direct electropolymerization of PANI on TiO2 nanostructures without the deposition of 4-nitrobenzendiazonium as under-layer. Different times for the electropolymerization step were applied. The composite materials were morphologically and electrochemically characterized by scanning electron microscopy, cyclic voltammetry and electrochemical impedance analysis. The improvement of the most relevant properties of the PANI–TiO2 composites for their application as photocatalysts and as supercapacitors was checked.
机译:TiO2纳米管-聚苯胺杂化复合材料是通过以下多步电化学程序合成的:(1)Ti箔的电化学氧化以获得TiO2有序的纳米管电极;(2)通过4-硝基苯二氮杂鎓盐的电还原功能化TiO2,(3)硝基还原成胺的电化学还原,(4)苯胺的恒电流电聚合到氨基苯基修饰的TiO2电极的表面上。样品也可以通过在TiO2纳米结构上直接电聚合PANI而没有沉积4-硝基苯重氮作为底层来制备。对电聚合步骤应用了不同的时间。通过扫描电子显微镜,循环伏安法和电化学阻抗分析对复合材料进行形态和电化学表征。检查了PANI-TiO2复合材料作为光催化剂和超级电容器的最相关性能的改进。

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