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Electrochemical and In Situ FTIR Studies of Adsorption and Oxidation of Dimethyl Ether on Platinum Electrode

机译:铂电极上二甲醚的吸附和氧化的电化学和原位FTIR研究

摘要

Dissociative adsorption and electrooxidation of dimethyl ether (DME) on a platinum electrode in different pH solutions were studied using cyclic voltammetry (CV) and in situ FTIR reflection spectroscopy. The coverage of the dissociative adsorbed species was measured about 70% from hydrogen adsorption-desorption region (0.05-0.35 V(vs RHE)) of steady-state voltammogram recorded in 0.1 mol center dot L-1 H2SO4 solution. It was found that the electrochemical reactivity of DME was pH dependent, i.e., the larger the pH value was, the less the reactivity of DME would be. No perceptible reactivity of DME in 0.1 mol center dot L-1 NaOH solution could be detected. It was revealed that the protonation of the oxygen atom in the C-O-C bond played a key role in the electrooxidation of DME. In situ FTIR spectroscopic results illustrated that linearly bonded CO (COL) species determined at low potential region were derived from the dissociative adsorption of DME and behaved as 'poisoning' intermediate. The COL species could be oxidized to CO2 at potential higher than 0.55 V (vs RHE), and in the potential range from 0.75 to 1.00 V (vs RHE) DME was oxidized simultaneously via HCOOH species that were identified as the reactive intermediates.
机译:使用循环伏安法(CV)和原位FTIR反射光谱法研究了在不同pH溶液中铂电极上二甲醚(DME)的解离吸附和电氧化作用。从记录在0.1 mol中心点L-1 H2SO4溶液中的稳态伏安图的氢吸附-脱附区域(0.05-0.35 V(vs RHE))测得离解吸附物质的覆盖率约为70%。发现DME的电化学反应性是pH依赖性的,即,pH值越大,DME的反应性越小。在0.1 mol中心点L-1 NaOH溶液中未检测到DME的可感知反应性。揭示了C-O-C键中氧原子的质子化在DME的电氧化中起关键作用。原位FTIR光谱结果表明,在低电势区域测定的线性键合CO(COL)物种源自DME的解离吸附,并表现为“中毒”中间体。可以在高于0.55 V(vs RHE)的电势下将COL物种氧化为CO2,并且在0.75至1.00 V(vs RHE)的电势范围内,DME可以通过被识别为反应性中间体的HCOOH物种同时被氧化。

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