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Experimental Activity Descriptors for Iridium-Based Catalysts for the Electrochemical Oxygen Evolution Reaction (OER)

机译:用于电化学氧气进化反应的基于铱的催化剂的实验活动描述仪(OER)

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摘要

Recent progress in the activity improvement of anode catalysts for acidic electrochemical water splitting is largely achieved through empirical studies of iridium-based bimetallic oxides. Practical, experimentally accessible, yet general predictors of catalytic OER activity have remained scarce. This study investigates iridium and iridium-nickel thin film model electrocatalysts for the OER and identifies a set of general ex situ properties that allow the reliable prediction of their OER activity. Well-defined Ir-based catalysts of various chemical nature and composition were synthesized by magnetron sputtering. Correlation of physicochemical and electrocatalytic properties revealed two experimental OER activity descriptors that are able to predict trends in the OER activity of unknown Ir-based catalyst systems. More specifically, our study demonstrates that the IrIII+- and OH-surface concentration of the oxide catalyst constitute closely correlated and generally applicable OER activity predictors. On the basis of these predictors, an experimental volcano relationship of Ir-based OER electrocatalysts is presented and discussed.
机译:通过基于铱的双金属氧化物的经验研究,基本上地实现了酸性电化学水分解的阳极催化剂活性改善的最新进展。实际,通过实验访问,但催化Oer活动的一般预测因子仍然稀缺。本研究调查了伊尔德里米和铱 - 镍薄膜模型电催化剂,并识别一组允许对其OER活动的可靠预测。通过磁控溅射合成各种化学性质和组合物的明确定义的IR基催化剂。物理化学和电催化特性的相关性揭示了两个实验oer活动描述符,其能够预测未知的基于IR的催化剂系统的OER活动中的趋势。更具体地,我们的研究表明,氧化物催化剂的IRIII +和OH-表面浓度构成密切相关,并且通常适用的OER活性预测器。在这些预测因子的基础上,提出并讨论了基于IR的OER电催化剂的实验火山关系。

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