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首页> 外文期刊>Electrochemistry communications >Electrocatalysis on gold nanostructures: Is the {110} facet more active than the {111} facet?
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Electrocatalysis on gold nanostructures: Is the {110} facet more active than the {111} facet?

机译:金纳米结构上的电催化:{110}面是否比{111}面更具活性?

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摘要

The anisotropic electrocatalytic properties of gold nanobelts and nanoplates enclosed by either {1 1 0} or {1 1 1} facets were studied. Different strategies were used to synthesize these materials. it was found that the {1 1 0} surface of gold does not necessarily show a higher electrocatalytic activity than the {1 1 1} surface. The {1 1 0} surface of gold is more active than the {1 1 1} surface for glucose oxidation in both, neutral and alkaline media. However, for methanol oxidation in alkaline solution, the {1 1 0} surface shows a lower activity than the {1 1 1} surface, which is contrary to the general belief that {1 1 0} facet is the most active surface among the three basal planes. The possible mechanisms are discussed.
机译:研究了金纳米带和{1 1 0}或{1 1 1}面所包围的纳米板的各向异性电催化性能。使用了不同的策略来合成这些材料。已经发现,金的{1 1 0}表面不一定显示出比{1 1 1}表面更高的电催化活性。在中性和碱性介质中,金的{1 1 0}表面都比{1 1 1}表面对葡萄糖氧化的活性高。但是,对于碱性溶液中的甲醇氧化,{1 1 0}表面的活性低于{1 1 1}表面,这与一般认为{1 1 0}晶面是表面上活性最高的表面相反。三个基架。讨论了可能的机制。

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