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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Fast Structure Determination of Electrode Surfaces for Investigating Electrochemical Dynamics Using Wavelength-Dispersive X-ray Crystal Truncation Rod Measurements
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Fast Structure Determination of Electrode Surfaces for Investigating Electrochemical Dynamics Using Wavelength-Dispersive X-ray Crystal Truncation Rod Measurements

机译:用波长分散X射线晶截面测量来研究电化学动力学电极表面的快速结构确定

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摘要

Determining the atomic structure across electrolyte-electrode interfaces with a sufficient temporal resolution is crucial to understanding how electrochemical reactions proceed. Surface X-ray diffraction is a well-established method for determining interface structures at the atomic scale. However, existing measurement methods are often incapable of quantifying time dependent structural changes during electrochemical processes because acquiring a diffraction rod profile sufficient for structure determination usually takes a longer time than the rate of the structural changes. This report demonstrates that the wavelength-dispersive method, which can acquire a range of the diffraction rod profile at once, is capable of the time-resolved analysis of electrochemical dynamics on a time scale of seconds and less, using electrochemical reactions on Pt(111) electrode surface as examples. In the case of the electrochemical oxidation of methanol, the quantitative analysis of the transient vertical displacement of the Pt(111) surface atomic layer gives evidence for a structural relaxation of the CO poisoning layer during its oxidative stripping. Present limitations and future prospects of the method are also discussed.
机译:用足够的时间分辨率确定电解质电极接口跨电解质电极接口的原子结构对于了解电化学反应如何进行。表面X射线衍射是用于确定原子尺度的界面结构的良好方法。然而,现有的测量方法通常不能在电化学过程中量化时间依赖性结构变化,因为获取足以用于结构确定的衍射杆曲线通常需要比结构变化的速率更长的时间。该报告表明,可以在PT上的电化学反应(111)的时间等级上,能够立即获取一系列衍射杆分布的波长分散方法,这能够在秒和更小的时间等级上分辨出电化学动力学的分辨率分析(111 )电极表面作为示例。在甲醇的电化学氧化的情况下,PT(111)表面原子层的瞬态垂直位移的定量分析给出了CO中毒剥离过程中的结构松弛的证据。还讨论了该方法的目前的局限性和未来的前景。

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