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Metal Dicyanamides as Efficient and Robust Water-Oxidation Catalysts

机译:金属二氰胺作为高效且鲁棒的水氧化催化剂

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摘要

Non-oxide cobalt-based water-oxidation electrocatalysts have received attention recently for their relative ease of preparation, they are stable both in acidic and basic media, and they have higher turnover frequencies than cobalt oxides. Recent studies show that one of the main bottlenecks in the implementation of non-oxide systems to water splitting is the low number of active metal sites, which is in the order of nmol cm(-2). Herein, a new series of non-oxide water-oxidation catalysts has been introduced to the field. Cobalt dicyanamides are observed to have around four times higher surface active sites and better catalytic performances than cyanide-based systems. Long-term catalytic studies (70 h) at an applied potential of 1.2 V and electrochemical studies performed in solutions in pH values of 3.0-12.0 indicate that the compounds are robust and retain their structures even under harsh conditions. Moreover, the addition of Ni impurities to cobalt dicyanamides is a feasible method to improve their catalytic activities.
机译:最近,非氧化物钴基水氧化电催化剂对其相对易于制备,它们是酸性和碱性介质的稳定性,它们具有比氧化钴更高的周转频率。最近的研究表明,将非氧化物系统实施到水分裂的主要瓶颈之一是少量活性金属位点,其达到Nmol cm(-2)的顺序。这里,已经将新的一系列非氧化物水氧化催化剂引入该领域。观察到钴二氰胺,比氰化物的系统具有大约四倍的表面活性位点和更好的催化性能。在3.0-12.0的pH值的溶液中进行的施加电位的长期催化研究(70h)和在溶液中进行的电化学研究表明该化合物即使在恶劣的条件下也能够保持其结构。此外,向钴二氰胺的Ni杂质添加是一种可行的改善其催化活性的可行方法。

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