Phenomenology of Intermediate Molecular Dynamics at Metal-Oxide Interfaces.

IF 11.7 1区 化学 Q1 CHEMISTRY, PHYSICAL Annual review of physical chemistry Pub Date : 2024-06-01 DOI:10.1146/annurev-physchem-062123-022921
Tanja Cuk
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Abstract

Reaction intermediates buried within a solid-liquid interface are difficult targets for physiochemical measurements. They are inherently molecular and locally dynamic, while their surroundings are extended by a periodic lattice on one side and the solvent dielectric on the other. Challenges compound on a metal-oxide surface of varied sites and especially so at its aqueous interface of many prominent reactions. Recently, phenomenological theory coupled with optical spectroscopy has become a more prominent tool for isolating the intermediates and their molecular dynamics. The following article reviews three examples of the SrTiO3-aqueous interface subject to the oxygen evolution from water: reaction-dependent component analyses of time-resolved intermediates, a Fano resonance of a mode at the metal-oxide-water interface, and reaction isotherms of metastable intermediates. The phenomenology uses parameters to encase what is unknown at a microscopic level to then circumscribe the clear and macroscopically tuned trends seen in the spectroscopic data.

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金属-氧化物界面的中间分子动力学现象学。
埋藏在固液界面中的反应中间体是难以进行物理化学测量的目标。它们本身是分子和局部动态的,而它们的周围一边是周期晶格,另一边是溶剂电介质。挑战化合物在金属氧化物表面上的不同位点,尤其是在其水性界面上的许多突出反应。近来,现象学理论与光学光谱学相结合,已成为分离中间产物及其分子动力学的重要工具。下面的文章评述了从水中进化出氧气的 SrTiO3-水界面的三个例子:时间分辨中间体的反应依赖成分分析、金属氧化物-水界面的法诺共振模式以及可蜕变中间体的反应等温线。该现象学利用参数将微观层面的未知因素囊括其中,然后对光谱数据中清晰而宏观的调整趋势进行限定。
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来源期刊
CiteScore
28.00
自引率
0.00%
发文量
21
期刊介绍: The Annual Review of Physical Chemistry has been published since 1950 and is a comprehensive resource for significant advancements in the field. It encompasses various sub-disciplines such as biophysical chemistry, chemical kinetics, colloids, electrochemistry, geochemistry and cosmochemistry, chemistry of the atmosphere and climate, laser chemistry and ultrafast processes, the liquid state, magnetic resonance, physical organic chemistry, polymers and macromolecules, and others.
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