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首页> 外文期刊>Electrocatalysis >Ethanol Electro-oxidation on Pt/C Electrocatalysts: An 'In Situ' Raman Spectroelectrochemical Study
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Ethanol Electro-oxidation on Pt/C Electrocatalysts: An 'In Situ' Raman Spectroelectrochemical Study

机译:Pt / C电催化剂上的乙醇电氧化:“原位”拉曼光谱电化学研究

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摘要

This work presents an "in situ" spectroelectrochemical study of the ethanol oxidation reaction on Pt/C electrocatalysts prepared by the polymeric precursor method. Characterization of the electrocatalysts was performed with X-ray diffraction, Raman spectroscopy, and cyclic voltammetry measurements. The average crystallite size was estimated as 7 nm, in agreement with the value reported in the literature for these types of electrocatalysts. The cyclic voltammetry characterization in an acidic medium presented the expected voltammetric behavior for polycrystalline Pt/C. The ethanol oxidation process was successfully employed "in situ", making use of an optical probe for excitation and collection of the Raman scattering signal. In this configuration it was possible to track the formation of the main products- CO, CO2 indirectly, acetaldehyde, and acetic acid-and to measure the decay of the ethanol concentration. The results indicate that the optical probe-based Raman spectroscopy technique is a very effective tool for studying "in situ" electrochemical oxidation reactions of ethanol. It might also be a very promising characterization technique for studies of the "in situ" electrochemical oxidation of small organic molecules.
机译:这项工作提出了一种通过聚合前体方法制备的Pt / C电催化剂上乙醇氧化反应的“原位”光谱电化学研究。用X射线衍射,拉曼光谱和循环伏安法测量进行电催化剂的表征。与这些类型的电催化剂的文献报道的值一致,平均微晶尺寸估计为7nm。在酸性介质中的循环伏安法表征提供了多晶Pt / C的预期伏安行为。乙醇氧化过程已成功地“就地”采用,利用光学探针激发和收集拉曼散射信号。在这种配置下,可以跟踪主要产品的形成(间接产生CO,CO2,乙醛和乙酸),并可以测量乙醇浓度的下降。结果表明,基于光学探针的拉曼光谱技术是研究乙醇“原位”电化学氧化反应的非常有效的工具。对于研究有机小分子的“原位”电化学氧化,这可能也是非常有前途的表征技术。

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