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Single Crystal Electrochemistry as an In Situ Analytical Characterization Tool

机译:单晶电化学作为原位分析表征工具

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The electrochemical behavior of platinum single crystal surfaces can be taken as a model response for the interpretation of the activity of heterogeneous electrodes. The cyclic voltammogram of a given platinum electrode can be considered a fingerprint characteristic of the distribution of sites on its surface. We start this review by providing some simple mathematical descriptions of the voltammetric response in the presence of adsorption processes. We then describe the voltammogram of platinum basal planes, followed by the response of stepped surfaces. The voltammogram of polycrystalline materials can be understood as a composition of the response of the different basal contributions. Further resolution in the discrimination of different surface sites can be achieved with the aid of surface modification using adatoms such as bismuth or germanium. The application of these ideas is exemplified with the consideration of real catalysts composed of platinum nanoparticles with preferential shapes.
机译:铂单晶表面的电化学行为可以作为对异构电极活性解释的模型响应。给定铂电极的循环伏型图可以被认为是其表面上部位分布的指纹特性。我们通过在存在吸附过程的存在下提供伏安响应的一些简单数学描述来开始审查。然后,我们描述了铂基底平面的伏安图,然后是阶梯表面的响应。多晶材料的伏安图可以理解为不同基础贡献的反应的组成。借助于使用诸如铋或锗的吸附物的表面改性,可以实现在不同表面位点的识别中的进一步分辨率。通过考虑由优先形状组成的铂纳米颗粒组成的真实催化剂,举例说明这些思想的应用。

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