钨微电极的离子电子显微镜:在光学显微镜下“观察”离子电流。

IF 3.3 3区 化学 Q2 CHEMISTRY, PHYSICAL Faraday Discussions Pub Date : 2023-04-06 DOI:10.1039/D3FD00040K
Zhu Zhang and Sanli Faez
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引用次数: 0

摘要

用于监测界面处电化学反应的光学方法是有利的,因为它们的桌面设置和易于集成到反应器中。在这里,我们将EDL调制显微镜应用于电流测量设备的主要组件之一:微电极。我们提出了在二茂铁-二甲醇-Fe(MeOH)2溶液内的不同电化学电势下,从钨微电极尖端对EDL调制对比度的实验测量。使用暗场散射显微镜和锁定检测技术的组合,我们测量了当电极电势通过溶解物种的氧化还原活性窗口扫描时,局部离子浓度振荡对AC电势的响应的相位和振幅。我们给出了这种响应的振幅和相位图,因此,这种方法可以用于研究由于靠近一般几何形状的金属和半导体物体的电化学反应而引起的离子通量的空间和时间变化。我们讨论了使用这种显微镜方法对离子电流进行宽场成像的优势和可能的扩展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Iontronic microscopy of a tungsten microelectrode: “seeing” ionic currents under an optical microscope†

Optical methods for monitoring electrochemical reactions at an interface are advantageous because of their table-top setup and ease of integration into reactors. Here we apply EDL-modulation microscopy to one of the main components of amperometric measurement devices: a microelectrode. We present experimental measurements of the EDL-modulation contrast from the tip of a tungsten microelectrode at various electrochemical potentials inside a ferrocene-dimethanol Fe(MeOH)2 solution. Using the combination of the dark-field scattering microscope and the lock-in detection technique, we measure the phase and amplitude of local ion-concentration oscillations in response to an AC potential as the electrode potential is scanned through the redox-activity window of the dissolved species. We present the amplitude and phase map of this response, as such this method can be used to study the spatial and temporal variations of the ion-flux due to an electrochemical reaction close to metallic and semiconducting objects of general geometry. We discuss the advantages and possible extensions of using this microscopy method for wide-field imaging of ionic currents.

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Faraday Discussions
Faraday Discussions 化学-物理化学
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期刊介绍: Discussion summary and research papers from discussion meetings that focus on rapidly developing areas of physical chemistry and its interfaces
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