Vazquez-Miranda Saul, Solokha Vladyslav, Balderas-Navarro Raul E, Hingerl Kurt, Cobet Christoph
Center for Surface and Nanoanalytics (ZONA), Johannes Kepler Universität, Altenbergerstr 69, A-4040, Linz, Austria.
Instituto de Investigación en Comunicación Óptica, Universidad Autónoma de San Luis Potosí, Álvaro Obregón 64, SLP 78000, San Luis Potosí, Mexico.
J Phys Chem C Nanomater Interfaces. 2020 Mar 5;124(9):5204-5212. doi: 10.1021/acs.jpcc.9b11326. Epub 2020 Feb 5.
Reflectance anisotropy spectroscopy (RAS) is a powerful optical probe that works on a polarization contrast basis. It can be operated in any environment, ranging from ultrahigh vacuum to vapor phases and liquids. The measured optical anisotropies are caused by several symmetry breaking effects and are exclusively assigned to the surface for otherwise bulk isotropic materials. In this work, we present a systematic study comprising in situ RAS-transient to assess the surface thermodynamics of the chloride adsorption on Cu(110) upon systematic variations of the applied electrode potentials in comparison to cyclic voltammetry (CV). Numerical time-derivatives of the measured RAS-transients are shown to be exclusively associated with electrical currents of those electrochemical reactions, which change the properties of the electrode surface. The recorded transient line-shapes track the Frumkin type isotherm properties related to chloride coverage. Both connections are theoretically discussed. Owing to the surface and interface specificity, RAS is shown to exhibit a high surface sensitivity. In particular, processes taking place in parallel, namely, the hydrogen evolution reaction (HER) as well as the copper dissolution as Cu and Cu, do not contribute to the RAS response.
反射率各向异性光谱(RAS)是一种基于偏振对比度的强大光学探针。它可以在从超高真空到气相和液体的任何环境中运行。测量到的光学各向异性是由几种对称性破缺效应引起的,并且对于其他体相各向同性材料,这些效应仅归因于表面。在这项工作中,我们进行了一项系统研究,包括原位RAS瞬态测量,以评估在与循环伏安法(CV)相比系统改变施加电极电位时,氯化物在Cu(110)上吸附的表面热力学。测量到的RAS瞬态的数值时间导数被证明仅与那些改变电极表面性质的电化学反应的电流相关。记录的瞬态线形跟踪与氯化物覆盖相关的弗鲁姆金型等温线性质。这两种联系都在理论上进行了讨论。由于表面和界面特异性,RAS显示出高表面灵敏度。特别是,同时发生的过程,即析氢反应(HER)以及铜以Cu⁺和Cu²⁺形式溶解,对RAS响应没有贡献。