首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Oxidation of the Partly Oxidized Ethylene Glycol Oxidation Products Glycolaldehyde, Glyoxal, Glycolic Acid, Glyoxylic Acid, and Oxalic Acid on Pt Electrodes: A Combined ATR-FTIRS and DEMS Spectroelectrochemical Study
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Oxidation of the Partly Oxidized Ethylene Glycol Oxidation Products Glycolaldehyde, Glyoxal, Glycolic Acid, Glyoxylic Acid, and Oxalic Acid on Pt Electrodes: A Combined ATR-FTIRS and DEMS Spectroelectrochemical Study

机译:在Pt电极上氧化部分氧化的乙二醇氧化产物乙醇醛,乙二醛,乙醇酸,乙醛酸和草酸:ATR-FTIRS和DEMS组合光谱电化学研究

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摘要

Adsorption and oxidation of the partly oxidized C2 products of ethylene glycol oxidation glycolaldehyde, glyoxal, glycolic acid, glyoxylic acid, and oxalic acid on a Pt thin film electrode were investigated using a combined spectroelectrochemical approach under continuous flow conditions, Potentiostatic as well as potentiodynamic experiments were preformed. The potential-dependent development of the adlayer resulting from the interaction of the organic molecules with the Pt film electrode was followed by highly surface sensitive, in situ ATR- FTIR spectroscopy, while the volatile products were simultaneously monitored by online differential electrochemical mass spectrometry (DEMS). The ATR-FTIR spectra recorded in the initial phase of the adsorption of the small organic molecules show characteristic bands in the range 1630—1705 cm~(-1) when glyoxal (1645 cm~(-1)), glyoxylic acid (1705 cm~(-1)), glycolaldehyde, or ethylene glycol is admitted, which are assigned to adsorbed 2-oxoacetyl and 2-carboxyacteyI, or 2-hydroxyacetyl, respectively. The potential-dependent initial CO_(ad) formation rates are determined showing high rates for the aldehydes at low potentials with glyoxal having the highest rates. With increasing potential, the hydroxyl group becomes more active, while the CO_(ad) formation rate from the carbonyl group decreases.
机译:在连续流动条件下,采用组合光谱电化学方法研究了乙二醇氧化乙醇醛,乙二醛,乙醇酸,乙醛酸和草酸在部分氧化的C2产物在连续流动条件下的吸附和氧化,恒电位以及电位动力学实验被执行。由于有机分子与Pt膜电极的相互作用而导致的吸附层的电势依赖性发展,随后是高度表面敏感的原位ATR-FTIR光谱学,同时通过在线差分电化学质谱(DEMS)监测挥发性产物)。当乙二醛(1645 cm〜(-1)),乙醛酸(1705 cm)吸附在有机小分子的初始阶段的ATR-FTIR光谱显示在1630-1705 cm〜(-1)范围内的特征谱带。接受((-1)),乙醇醛或乙二醇,它们分别分配给吸附的2-氧代乙酰基和2-羧基乙酰基I或2-羟基乙酰基。确定了电势依赖性的初始CO_(ad)形成速率,显示出低电势下醛的高速率,乙二醛具有最高的速率。随着电势的增加,羟基变得更具活性,而羰基的CO_(ad)生成速率降低。

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