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Beta Oscillations in the Electro-oxidation of Ethylene Glycol on Platinum

机译:乙二醇在铂上电氧化中的β振荡

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Oscillatory instabilities are ubiquitous in many electrocatalytic reactions. In the case of the electrocatalytic oxidation of small organic molecules, oscillating electrode potential and reaction current are very often found under different experimental conditions. Most of the experimental studies are devoted to C1 molecules such as formic acid and methanol, and very few reports concerning C2 compounds are available, in spite of their technological relevance as potential fuels. We report in this letter the observation of fast potential oscillations during the electro-oxidation of ethylene glycol on platinum and in alkaline media. Oscillations were studied under galvanostatic control, and oscillation frequencies as high as 16.8 Hz were observed. To the best of our knowledge, those potential oscillations are the fastest ones ever reported for the electro-oxidation of small organic molecules, and we named them beta oscillations in reference to the taxonomy employed to classify brain rhythms. Oscillations were observed at different temperatures, and the system’s dynamics was found to be rather insensitive to temperature, in contrast to that observed under non-oscillatory regime.
机译:振荡不稳定性在许多电催化反应中普遍存在。在小有机分子的电催化氧化情况下,经常在不同的实验条件下发现振荡的电极电位和反应电流。大多数实验研究都针对C1分子,例如甲酸和甲醇,尽管有关C2化合物作为潜在燃料的技术意义重大,但几乎没有关于C2化合物的报道。我们在这封信中报告了在铂和碱性介质中乙二醇电氧化过程中快速电位振荡的观察结果。在恒电流控制下研究了振荡,并观察到高达16.8 Hz的振荡频率。据我们所知,这些潜在的振荡是有史以来最快的有机小分子电子氧化的振荡,我们根据对脑节律进行分类的分类法将其命名为β振荡。与在非振荡状态下观察到的相反,在不同温度下观察到振荡,并且系统的动力学对温度不敏感。

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