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Preparation of Nanocomposites of Polypyrrole-metal(or Metal Oxide)on the Surface of V2O5 Coated Cathode through a One-step Method

机译:通过一步法制备V2O5涂覆阴极表面的含有聚吡咯 - 金属(或金属氧化物)的纳米复合材料

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Simultaneous formation of polypyrrole(PPy)and metal(or metal oxide)on a single electrode is particularly challenging because the electrodeposition of PPy and metal(or metal oxide)usually requires opposite potentials.Namely,the preparation of PPy needs an oxidation potential while the metal(or metal oxide)needs a reduction potential.In the present work,nanocomposites of PPy and metal(or metal oxide)were prepared successfully on the cathode by a one-step process,in which V2O5 coated titanium sheet was applied as cathode.In fact,two chemical reactions happened here at the same time.The first reaction was the chemical preparation of PPy on the cathode by the use of V2O5 as oxidant and the second reaction was the electrochemical formation of metal(or metal oxide)on the surface of the same cathode.As a result,nanocomposites of PPy and metal(or metal oxide)were one-step prepared on a single electrode.The morphology,composition and structure of nanocomposites were investigated via field emission scanning electron microscopy(FESEM),energy dispersive X-ray(EDX)and X-ray diffraction(XRD).Furthermore,PPy-Ag nanocomposite was prepared and used as a sensor to evaluate the electrocatalytic performance of H2O2.It was found that the sensor displayed excellent H2O2Vsensing properties and a feasibility for practical applications.These results imply that the present one-step process not only presents a simple,facial and efficient way for the formation of PPy-based nanocomposites but also exhibits great potential to improve the application performance and broaden the applied fields of the nanocomposites.
机译:单个电极上的聚吡咯(PPY)和金属(或金属氧化物)的同时形成尤其具有挑战性,因为PPY和金属(或金属氧化物)的电沉积通常需要相反​​的电位。且PPY的制备需要氧化潜力金属(或金属氧化物)需要减少电位。通过一步法,在阴极上成功地制备了PPY和金属(或金属氧化物)的纳米复合材料,其中将V2O5涂覆的钛板施加为阴极。事实上,在这里同时发生了两种化学反应。第一反应是通过使用V2O5作为氧化剂的阴极上Ppy的化学制备,第二反应是表面上金属(或金属氧化物)的电化学形成在相同的阴极中。结果,PPY和金属(或金属氧化物)的纳米复合材料在单个电极上制备了一步。通过现场Emissi研究了纳米复合材料的形态,组成和结构在扫描电子显微镜(FeSEM)中,制备能量分散X射线(EDX)和X射线衍射(XRD)。加入Ppy-Ag纳米复合材料并用作传感器,以评估H2O2的电催化性能。传感器显示出优异的H2O2VSENSing属性和实际应用的可行性。这些结果意味着目前的一步过程不仅为形成了基于PPY的纳米复合材料的简单,面部和有效的方法,而且表现出改善应用的巨大潜力性能并拓宽纳米复合材料的涂布场。

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