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Manipulation and Patterning of the Surface Hydrogen Concentration on Pd(lll) by Electric Fields

机译:电场对Pd(III)表面氢浓度的控制和构图

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Modification of the structure of materials at the nanoscale level is one goal of current nanoscience research. For example, by purposefully modifying the spatial distribution of adsorbates, the rate of chemical reactions could be controlled on a local scale. Herein, we show how this goal can be accomplished in the case of hydrogen on Pd(111) through the application of local electric fields. Hydrogen adsorption on the Group 10 metals is particularly interesting, because these metals are used as catalysts in a variety of industrial processes, including hydrogenation and dehydro-genation reactions. Electric fields on surfaces are also of primary interest in electrochemistry, and despite the considerable amount of experimental and theoretical work done to date, there still remains more work to be done before a clear understanding of electric-field-induced phe nomena at the atomic scale can be gained.
机译:在纳米级上改变材料的结构是当前纳米科学研究的目标之一。例如,通过有目的地改变吸附物的空间分布,可以在局部规模上控制化学反应的速率。在这里,我们展示了如何通过应用局部电场在Pd(111)上存在氢的情况下实现该目标。氢在第10组金属上的吸附特别有趣,因为这些金属在包括加氢和脱氢反应在内的各种工业过程中用作催化剂。表面上的电场也是电化学的主要兴趣,尽管迄今为止已进行了大量的实验和理论工作,但在清楚了解原子尺度上的电场感应现象之前,仍有许多工作要做可以获得。

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