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Application of Scanning Tunneling Microscopy in Electrocatalysis and Electrochemistry

机译:扫描隧道显微镜的应用电催化作用和电化学

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摘要

Scanning tunneling microscopy (STM) has gained increasing attention in the field of electrocatalysis due to its ability to reveal electrocatalyst surface structures down to the atomic level in either ultra-high-vacuum (UHV) or harsh electrochemical conditions. The detailed knowledge of surface structures, surface electronic structures, surface active sites as well as the interaction between surface adsorbates and electrocatalysts is highly beneficial in the study of electrocatalytic mechanisms and for the rational design of electrocatalysts. Based on this, this review will discuss the application of STM in the characterization of electrocatalyst surfaces and the investigation of electrochemical interfaces between electrocatalyst surfaces and reactants. Based on different operating conditions, UHV-STM and STM in electrochemical environments (EC-STM) are discussed separately. This review will also present emerging techniques including high-speed EC-STM, scanning noise microscopy and tip-enhanced Raman spectroscopy.
机译:扫描隧道显微镜(STM)了领域的越来越多的关注电催化作用,由于其揭示的能力electrocatalyst表面结构的在超高真空(特高压)或原子水平恶劣的电化学条件。知识的表面结构、表面电子结构,表面活性的网站表面之间的相互作用被吸附物和electrocatalysts高度有利于electrocatalytic的研究机制和合理的设计electrocatalysts。讨论STM的应用程序electrocatalyst表面和表征电化学接口的调查electrocatalyst表面和反应物之间。基于不同的操作条件,UHV-STM和STM电化学环境(EC-STM)分别进行了讨论。新兴技术包括高速EC-STM,显微镜和扫描噪声tip-enhanced拉曼光谱。

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