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Imaging Transient Formation of Diffusion Layers with Fluorescence-Enabled Electrochemical Microscopy

机译:成像瞬态形成的扩散层荧光荧光电化学显微镜。

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Fluorescence-enabled electrochemical microscopy (FEEM) is demonstrated as a new technique to image transient concentration profiles of redox species generated on ultramicroelectrodes (UMEs). FEEM converts an electrical signal into an optical signal by electrically coupling a conventional redox reaction to a fluorogenic reporter reaction on a closed bipolar electrode. We describe the implementation of FEEM for diffusion layer imaging and use an array of thousands of parallel bipolar electrodes to image the diffusion layers of UMEs in two and three dimensions. This new technique provides a way to image an entire 2-dimensional lateral cross section of a dynamic diffusion layer in a single experiment. By taking several of these lateral cross sections at different axial positions in the diffusion layer, a 3-dimensional image of the diffusion layer can be built. We image the diffusion layer of a 10 mu m diameter carbon fiber electrode over the course of a cyclic voltammetry experiment and compare the FEEM-generated images to concentration profiles generated from numerical simulation. We also image the diffusion layer of a two electrode array consisting of two 10 mu m diameter carbon fibers over the course of a potential step experiment.
机译:荧光荧光电化学显微镜(FEEM)被证明是一种对超微电极(UME)上生成的氧化还原物质的瞬态浓度分布进行成像的新技术。 FEEM通过将常规的氧化还原反应与封闭的双极电极上的荧光报告反应电偶联,将电信号转换为光信号。我们描述了用于扩散层成像的FEEM的实现,并使用成千上万的平行双极电极阵列在二维和三维中成像UME的扩散层。这项新技术提供了在单个实验中对动态扩散层的整个二维横截面成像的方法。通过在扩散层中的不同轴向位置处截取这些横截面中的几个,可以建立扩散层的三维图像。我们在循环伏安法实验过程中对直径为10μm的碳纤维电极的扩散层进行了成像,并将FEEM生成的图像与通过数值模拟生成的浓度曲线进行了比较。我们还对两个电极阵列的扩散层进行了成像,该阵列由两根直径为10微米的碳纤维组成,并经过了潜在的分步实验。

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