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Catalyst Stability Benchmarking for the Oxygen Evolution Reaction: The Importance of Backing Electrode Material and Dissolution in Accelerated Aging Studies

机译:氧气发展反应的催化剂稳定性基准:加速老化研究中背衬电极材料和溶解的重要性

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摘要

In searching for alternative oxygen evolution reaction (OER) catalysts for acidic water splitting, fast screening of the material intrinsic activity and stability in half-cell tests is of vital importance. The screening process significantly accelerates the discovery of new promising materials without the need of time-consuming real-cell analysis. In commonly employed tests, a conclusion on the catalyst stability is drawn solely on the basis of electrochemical data, for example, by evaluating potential-versus-time profiles. Herein important limitations of such approaches, which are related to the degradation of the backing electrode material, are demonstrated. State-of-the-art Ir-black powder is investigated for OER activity and for dissolution as a function of the backing electrode material. Even at very short time intervals materials like glassy carbon passivate, increasing the contact resistance and concealing the degradation phenomena of the electrocatalyst itself. Alternative backing electrodes like gold and boron-doped diamond show better stability and are thus recommended for short accelerated aging investigations. Moreover, parallel quantification of dissolution products in the electrolyte is shown to be of great importance for comparing OER catalyst feasibility.
机译:在寻找用于酸性水分解的替代氧释放反应(OER)催化剂时,在半电池测试中快速筛选材料的固有活性和稳定性至关重要。筛选过程极大地加快了新有希望的材料的发现,而无需耗时的真实细胞分析。在常用的测试中,仅基于电化学数据,例如通过评估电势-时间曲线,得出催化剂稳定性的结论。在此证明了这种方法的重要限制,这些限制与背电极材料的降解有关。研究了最新技术的Ir-黑粉的OER活性和溶出度,它们是背电极材料的函数。即使在很短的时间间隔内,玻璃碳等材料也会钝化,从而增加了接触电阻并掩盖了电催化剂本身的降解现象。诸如金和掺硼金刚石之类的替代背电极表现出更好的稳定性,因此建议用于短期加速老化研究。而且,显示出电解质中溶解产物的平行定量对于比较OER催化剂的可行性非常重要。

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