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首页> 外文期刊>Journal of physical chemistry letters >Mechanistic Study of IrO2 Dissolution during the Electrocatalytic Oxygen Evolution Reaction
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Mechanistic Study of IrO2 Dissolution during the Electrocatalytic Oxygen Evolution Reaction

机译:IRO2溶解在电催化氧气进化反应过程中的机械研究

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Understanding the mechanistic interplay between the activity and stability of water splitting electrocatalysts is crucial for developing efficient and durable water electrolyzers. Ir-based materials are among the best catalysts for the oxygen evolution reaction (OER) in acidic media, but their degradation mechanisms are not completely understood. Here, through first-principles calculations we investigate iridium dissolution at the IrO2(110)/water interface. Simulations reveal that the surface-bound IrO2OH species formed upon iridium dissolution should be thermodynamically stable in a relatively wide potential window undergoing transformations into IrVI (as IrO3) at high anodic potentials and IrIII (as Ir(OH)(3)) at low anodic potentials. The identified high-valence surface-bound dissolution intermediates of Ir are determined to display greater OER activities than the pristine IrO2(110) surface in agreement with the experimentally observed high activity of an amorphous hydrated IrOx surface layer. Combined with recent experimental results, our simulations illuminate the mechanistic details of the degradation mechanism of IrO2 and how it couples to electrocatalytic OER.
机译:了解水分裂电催化剂的活性和稳定性之间的机械相互作用对于开发有效和耐用的水电解器至关重要。基于IR基材料是酸性介质中氧进化反应(OER)的最佳催化剂之一,但不完全理解它们的降解机制。这里,通过第一原理计算,我们研究IRO2(110)/水界面处的铱溶解。仿真表明,在铱溶解时形成的表面结合的IRO2OH物种应在高阳极电位和IRIII(如IR(OH)(3))下进行转化的相对宽的潜在窗口中的相对宽的潜在窗口中的热力学稳定潜力。确定IR的鉴定的高价表面结合的溶出中间体,其与原始IRO2(110)表面相一致地显示出更大的OER活动,同时与实验观察到的无定形水合IROX表面层的高活性。结合最近的实验结果,我们的模拟照亮了IRO2的降解机制的机制细节以及如何耦合到电催化作用。

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