Distance tunnelling characteristics of solid/liquid interfaces: Au(111)/Cu2+/H2SO4

PhysChemComm Pub Date : 2002-01-01 DOI:10.1039/B205720B
G. Nagy, D. Mayer, T. Wandlowski
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引用次数: 4

Abstract

This study examined the liquid part of solid/liquid interfaces at the atomic level. By measuring distance tunnelling characteristics the height of the potential barrier between the tip and the sample, i.e., the potential energy field the tunnelling electrons are exposed to, can be obtained, and this provides direct access to double layer properties. We found exponential IS-characteristics for the bare and the oxidised Au(111) surface, while non-exponential behaviour was obtained in the presence of ordered adlayers. The influence of the local environment just within the Helmholtz layer is strong enough to perturb the tunnelling process significantly. The electrolyte properties in the Gouy region do not change with electrode potential, the liquid in the tunnelling gap has only an average effect by lowering the barrier height.
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Au(111)/Cu2+/H2SO4固/液界面的距离隧穿特性
本研究在原子水平上考察了固/液界面的液体部分。通过测量距离隧穿特性,可以得到尖端与样品之间势垒的高度,即隧穿电子所暴露的势能场,从而直接获得双层性质。我们发现裸露和氧化的Au(111)表面具有指数is特征,而有序层存在时则具有非指数行为。仅在亥姆霍兹层内的局部环境的影响就足以对隧道掘进过程产生明显的干扰。gay区电解质的性质不随电极电位的变化而变化,通过降低势垒高度,隧道隙中的液体仅具有平均效应。
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