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Multifunctional Material Composed of Cesium Salt of Keggin-Type Heteropolytungstate and PtRh/Vulcan Nanoparticles for Electrochemical Oxidation of 2-Propanol in Acidic Medium

机译:多官能材料由Keggin型杂多钨酸铯和Ptrh / Vulcan纳米粒子组成,用于酸性介质中2-丙醇的电化学氧化

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摘要

Platinum-rhodium nanoparticles modified with cesium salt of phosphotungstic acid, CsPTA, have been tested for electro-oxidation of 2-propanol in acidic medium. The resulting Pt-based nanoparticle-containing materials have been carried out using X-ray diffraction (XRD), microscopy (TEM), X-ray photoelectron spectroscopy (XPS), and different electrochemical techniques combining with differential electrochemical mass spectrometry (DEMS). The experimental results such as cyclic voltammetry and chronoamperometry exhibit that films on carbon electrodes composed of CsPTA-modified PtRh/Vulcan nanoparticles improve the catalytic activity, in terms of potential and current densities recorded during electro-oxidation of 2-propanol, relative to the CsPTA-free PtRh/Vulcan nanoparticles. Particularly, the boost in the catalytic current densities is observed at low potential value (below 0.25 V vs. RHE). The differential electrochemical mass spectrometry measurements were utilized to recognize the reaction intermediates as well as products created during the electro-oxidation of 2-propanol. The results indicate that contributions from a straightforward oxidation of 2-propanol to CO(2)are small in comparison to acetone yield.
机译:用磷酸钨酸铯盐修饰的铂 - 铑纳米粒子已被测试用于酸性介质中2-丙醇的电氧化。使用X射线衍射(XRD),显微镜(TEM),X射线光电子能谱(XPS)和与差动电化学质谱(DEM)组合的不同电化学技术进行了所得的基于纳米粒子的材料。诸如循环伏安法和计数计的实验结果表明,在由CSPTA改性的PTRH /硫磺纳米粒子组成的碳电极上的薄膜在相对于CSPTA的2-丙醇的电氧化期间记录的电位和电流密度方面改善了催化活性。 -Free ptrh / vulcan纳米粒子。特别地,在低电位值(低于0.25V与RHE)下观察到催化电流密度的增强。使用差动电化学质谱测量测量以识别反应中间体以及在2-丙醇的电氧化过程中产生的产物。结果表明,与丙酮产率相比,来自2-丙醇至CO(2)的直接氧化的贡献很小。

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