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Optimizing the oxygen evolution reaction for electrochemical water oxidation by tuning solvent properties

机译:进化优化氧反应电化学氧化水通过调整溶剂属性

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Electrochemical water-based energy cycles provide a most promising alternative to fossil-fuel sources of energy. However, current electrocatalysts are not adequate (high overpotential, lack of selectivity toward O-2 production, catalyst degradation). We propose here mechanistic guidelines for experimental examination of modified catalysts based on the dependence of kinetic rates on the solvent dielectric constant. To illustrate the procedure we consider the fcc(111) platinum surface and show that the individual steps for the oxygen evolution reaction (OER) and oxygen reduction reaction (ORR) change systematically with the polarizability of the medium. Thus changing this environmental variable can be used to tune the rate determining steps and the barriers, providing a means for screening and validating new systems to optimize the rate determining steps for the ORR and OER reaction pathways.
机译:电化学提供水性能量周期一个最有前途的替代化石燃料的能量源。electrocatalysts并不足够的(高对0 2过电压,缺乏选择性生产,催化剂降解)。这里的机械实验指南检查修改后的催化剂的基础上依赖的动态利率溶剂介电常数。我们认为fcc(111)铂表面表明氧气的各个步骤进化(OER)和氧还原反应反应(ORR)变化的系统介质的极化率。环境变量可以用来调整速率决定步骤和障碍,提供一种筛选和验证新系统优化率决定奥尔的步骤和OER反应通路。

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