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The stability number as a metric for electrocatalyst stability benchmarking

机译:稳定性作为指标electrocatalyst稳定基准测试

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摘要

Reducing the noble metal loading and increasing the specific activity of the oxygen evolution catalysts are omnipresent challenges in proton-exchange-membrane water electrolysis, which have recently been tackled by utilizing mixed oxides of noble and non-noble elements. However, proper verification of the stability of these materials is still pending. Here we introduce a metric to explore the dissolution processes of various iridium-based oxides, defined as the ratio between the amounts of evolved oxygen and dissolved iridium. The so-called stability number is independent of loading, surface area or involved active sites and provides a reasonable comparison of diverse materials with respect to stability. The case study on iridium-based perovskites shows that leaching of the non-noble elements in mixed oxides leads to the formation of highly active amorphous iridium oxide, the instability of which is explained by the generation of short-lived vacancies that favour dissolution. These insights are meant to guide further research, which should be devoted to increasing the utilization of highly durable pure crystalline iridium oxide and finding solutions to stabilize amorphous iridium oxides.
机译:降低了贵金属负载和增加具体活动的氧气进化催化剂是无处不在的挑战质子交换膜电解水,最近解决利用混合氧化物的高贵和非贵金属元素。然而,适当的验证的稳定这些材料仍悬而未决。介绍一个度量来探索解散各种iridium-based氧化物的过程,定义为数量之间的比率氧气和溶解铱进化而来。所谓的稳定号码是独立的加载、表面积或参与活动的网站并提供一个合理的比较多样化材料对稳定。iridium-based研究表明钙钛矿在混合非贵金属元素的浸出氧化物导致高度活跃的形成非晶氧化铱,不稳定的是由短暂的一代吗职位空缺,解散。旨在指导进一步的研究,这应该吗用于增加的利用率高度耐用的纯水晶氧化铱和寻找解决方案稳定无定形铱氧化物。

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