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Spectroscopic Studies of the Glycerol Electro-Oxidation on Polycrystalline Au and Pt Surfaces in Acidic and Alkaline Media

机译:酸性和碱性介质中多晶Au和Pt表面甘油电氧化的光谱研究

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The electro-oxidation of glycerol on Au and Pt was studied in acid and alkaline media. The reaction intermediates and products formed were determined by in situ Fourier transform infrared (FTIR) spectroscopy. The experimental FTIR spectra measured on Au and Pt in acid and alkaline media were compared with the standard ones for the identification of the oxidation products. For Au, the oxidation reaction is highly dependent on the solution pH. In alkaline medium, dihydroxyacetone, tartronic acid, mesoxalic acid, glyoxylic acid, and carbon dioxide are formed while in acidic medium tartronic acid, formic acid, and carbon dioxide are formed. However, the oxidation of glycerol on Pt leads to the formation of tartronic acid, glycolic acid, glyoxylic acid, formic acid, and carbon dioxide, independent of the solution pH. For both electrode materials, Pt and Au, carbon dioxide is detected indicating the possible breaking of the C-C-C bonds. Clearly, the glycerol oxidation pathways can be controlled by the nature of the electrode material and solution pH.Furthermore, glycerol is a typical compound that has potentiality to produce electricity when feed a fuel cell while many chemicals with commercial interest are concomitantly formed.
机译:在酸性和碱性介质中研究了甘油在Au和Pt上的电氧化。反应中间体和形成的产物通过原位傅立叶变换红外(FTIR)光谱法测定。将在酸性和碱性介质中在金和铂上测得的实验FTIR光谱与用于鉴定氧化产物的标准光谱进行了比较。对于Au,氧化反应高度依赖于溶液的pH。在碱性介质中,会形成二羟基丙酮,酒石酸,中草酸,乙醛酸和二氧化碳,而在酸性介质中,会形成酒石酸,甲酸和二氧化碳。但是,甘油在Pt上的氧化会导致酒石酸,乙醇酸,乙醛酸,甲酸和二氧化碳的形成,而与溶液的pH无关。对于两种电极材料(Pt和Au),都检测到二氧化碳,表明C-C-C键可能断裂。显然,甘油的氧化途径可以通过电极材料和溶液pH的性质来控制。此外,甘油是一种典型的化合物,当向燃料电池供料时具有产生电能的潜力,同时伴随着许多具有商业意义的化学品的形成。

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