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首页> 外文期刊>Reaction Kinetics, Mechanisms and Catalysis >In situ videometry monitoring of bubble behavior during the electrocatalytic oxygen evolution reaction
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In situ videometry monitoring of bubble behavior during the electrocatalytic oxygen evolution reaction

机译:电催化制氧反应过程中气泡行为的现场视频监测

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摘要

Cyclic voltammetry (CV) on rotating Pt disc electrode was used for electrocatalytic oxidation of OH−. Hydroxide ion oxidation is followed by oxygen evolution with gas bubble formation. The image analysis was performed in situ in order to find correlation between bubbles related phenomena and the current of OH− oxidation. Bubble formation was tested in four different regimes having different scan rate and/or electrode rotation rate. The videometry using high speed camera was applied to observe the bubble related phenomena. The integral effect of presence of bubbles was analyzed. The fast Fourier transformation and normalized power spectra were used for advanced image analysis. Using this type of analysis, two different characteristic periodical behaviors were reported for the first time. The obtained periods were in accordance with scan rate and electrode rotation rate. The former periodic component of bubble formation process was correlated with well defined CV cycles, and hence, related to electrocatalytic oxidation–reduction of OH−. The other periodic component of bubble behavior induced by rotation rate (600 rpm) was shifted from 0.01 s toward slightly higher values probably due to hydrodynamic conditions in the investigated system.
机译:旋转Pt圆盘电极上的循环伏安法(CV)用于OH-的电催化氧化。氢氧根离子氧化后,放出氧气并形成气泡。为了发现气泡相关现象与OH-氧化电流之间的相关性,对图像进行了原位分析。在具有不同扫描速率和/或电极旋转速率的四种不同方案中测试了气泡的形成。应用高速相机进行的测像法观察气泡相关现象。分析了气泡存在的整体效果。快速傅里叶变换和归一化功率谱用于高级图像分析。使用这种类型的分析,首次报告了两种不同的特征性周期性行为。所获得的周期与扫描速率和电极旋转速率一致。气泡形成过程的前周期性成分与明确定义的CV循环相关,因此与OH-的电催化氧化还原有关。转速(600 rpm)引起的气泡行为的其他周期性成分可能从0.01s移到稍高的值,这可能是由于研究系统中的流体动力学条件造成的。

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