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Electrocatalytic Behaviour of Epitaxial Ag(111) Overlayers Electrodeposited onto Noble Metals: Electrooxidation of D-Glucose

机译:电沉积到贵金属上的外延Ag(111)涂层的电催化行为:D-葡萄糖的电氧化

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摘要

The electrooxidation of D-glucose in 0.1 M NaOH has been studied at epitaxially grown Ag monolayers, which have been fabricated by electrodeposition onto Au(111), Pt(111), and Pd(111) single-crystal electrodes. The electrochemical behaviour and the adsorption properties of these Ag monolayers are significantly altered by the underlying substrates. While the Ag monolayer on Pt(111) shows the most negative onset potential for glucose oxidation, Ag overlayers on Au (111) reveal the highest current densities for the systems under study. Interestingly, a Ag submonolayer on Au (111) shows the highest current densities for glucose oxidation under the experimental conditions. However, Ag overlayers on Au(111) with a thickness of two monolayers and more are poor electrocatalysts like massive Ag(111). The influence of OH adsorption and the relevance of the potentials of zero charge for the various Ag surfaces on the measured oxidation current densities are discussed.
机译:已经在外延生长的Ag单层上研究了D-葡萄糖在0.1 M NaOH中的电氧化,该Ag单层是通过电沉积到Au(111),Pt(111)和Pd(111)单晶电极上制成的。这些Ag单层的电化学行为和吸附特性被下面的基底显着改变。尽管Pt(111)上的Ag单层显示出最负的葡萄糖氧化起始电位,但Au(111)上的Ag覆盖层显示了所研究系统的最高电流密度。有趣的是,在实验条件下,Au(111)上的Ag亚单层显示出最高的葡萄糖氧化电流密度。但是,在Au(111)上厚度为两个单层或更多的Ag覆盖层是较差的电催化剂,如块状Ag(111)。讨论了OH吸附的影响以及各种Ag表面的零电荷电势对测得的氧化电流密度的影响。

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