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Preparation of nano-structured platinum electrode surfaces by electrochemical methods and its properties

机译:电化学法制备纳米铂电极表面及其性能

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摘要

The nano-sized constant potential roughened platinum (CPRPt) and constant current roughened platinum (CCRPt) electrode-surfaces have been prepared successfully by oxidation-reduction-cycle method. Many regularly shaped triangle-cones of the size of 10 similar to 30 nm were observed on the CPRPt electrode surface by the scan electron microscopy (SEM) technology. The electro-oxidation of methanol on the nano-CPRPt and the CCRPt electrode-surfaces was used to investigate the performances with the results of the peak current density 1.35 and 2.50 times greater than those of smooth Pt respectively. The in situ Raman spectra of these two kinds of electrode-surfaces indicated their high surface enhanced Raman spectrum (SERS) effects for pyridine adsorption. The CPRPt electrode surface has extraordinarily enhanced effect for adsorption-dissociation of small organic molecules. The mechanism of SERS on these platinum electrode-surfaces has been also discussed.
机译:通过氧化还原循环法成功制备了纳米级恒电位粗化铂(CPRPt)和恒流粗化铂(CCRPt)电极表面。通过扫描电子显微镜(SEM)技术在CPRPt电极表面观察到许多大小为10的类似于30 nm的规则形状的三角锥。使用甲醇在纳米CPRPt和CCRPt电极表面上的电氧化来研究性能,其峰值电流密度分别为光滑Pt的1.35和2.50倍。这两种电极表面的原位拉曼光谱表明,它们对吡啶的吸附具有较高的表面增强拉曼光谱(SERS)效应。 CPRPt电极表面对于有机小分子的吸附离解具有非凡的增强作用。还讨论了在这些铂电极表面上SERS的机理。

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