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液-液-固三相界面处的离子转移和光电化学:展望。

Ion-transfer- and photo-electrochemistry at liquid|liquid|solid electrode triple phase boundary junctions: perspectives.

机构信息

Department of Chemistry, University of Bath, Claverton Down, Bath BA2 7AY, UK.

出版信息

Phys Chem Chem Phys. 2011 Jun 7;13(21):10036-47. doi: 10.1039/c1cp20375d. Epub 2011 Apr 13.

Abstract

Ion transfer at liquid|liquid junctions is one of the most fundamental processes in nature. It occurs coupled to simultaneous electron transfer at the line junction (or triple phase boundary) formed by the two liquids in contact to an electrode surface. The triple phase boundary can be assembled from a redox active microdroplet deposit of a water-immiscible liquid on a suitable electrode surface immersed into aqueous electrolyte. Ion transfer voltammetry measurements at this type of electrode allow both thermodynamic and kinetic parameters for coupled ion and electron transfer processes to be obtained. This overview summarises some recent advances in understanding and application of triple phase boundary redox processes at organic liquid|aqueous electrolyte|working electrode junctions. The design of novel types of electrodes is considered based on (i) extended triple phase boundaries, (ii) porous membrane processes, (iii) hydrodynamic effects, and (iv) generator-collector triple phase boundary systems. Novel facilitated ion transfer processes and photo-electrochemical processes at triple phase boundary electrodes are proposed. Potential future applications of triple phase boundary redox systems in electrosynthesis, sensing, and light energy harvesting are indicated.

摘要

离子在液-液界面的传递是自然界中最基本的过程之一。它与同时在接触电极表面的两种液体形成的线结(或三相边界)处的电子传递偶联发生。三相边界可以由水不混溶液体的氧化还原活性微液滴在浸入水相电解质的合适电极表面上的沉积物组装而成。在这种电极上进行的离子转移伏安法测量可以获得偶联的离子和电子转移过程的热力学和动力学参数。本综述总结了在有机液体/水相电解质/工作电极界面处三相边界氧化还原过程的理解和应用方面的一些最新进展。基于 (i) 扩展的三相边界,(ii) 多孔膜过程,(iii) 流体动力学效应,和 (iv) 发生器-收集器三相边界系统,考虑了新型电极的设计。提出了在三相边界电极处的新型促进离子转移过程和光电化学过程。指出了三相边界氧化还原体系在电合成、传感和光能收集方面的潜在未来应用。

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