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Design of Mononuclear Ruthenium Catalysts for Low-Overpotential Water Oxidation

机译:低电势水氧化单核钌催化剂的设计

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摘要

Water oxidation is a key reaction in natural photosynthesis and in many schemes for artificial photosynthesis. Inspired by energy challenges and the emerging understanding of photosystem II, the development of artificial molecular catalysts for water oxidation has become a highly active area of research in recent years. In this Focus Review, we describe recent achievements in the development of single-site ruthenium catalysts for water oxidation with a particular focus on the overpotential of water oxidation. First, we introduce the general scheme to access the high-valent ruthenium-oxo species, the key species of the water-oxidation reaction. Next, the mechanisms of the O-O bond formation from the active ruthenium-oxo species are described. We then discuss strategies to decrease the onset potentials of the water-oxidation reaction. We hope this Focus Review will contribute to the further development of efficient catalysts toward sustainable energy-conversion systems.
机译:水氧化是自然光合作用和许多人工光合作用方案中的关键反应。受能源挑战和对光系统II新兴认识的启发,用于水氧化的人工分子催化剂的开发已成为近年来研究的一个非常活跃的领域。在本《焦点回顾》中,我们描述了单中心钌催化剂在水氧化中的最新进展,特别着重于水氧化的超电势。首先,我们介绍了访问高价钌-氧代物种(水氧化反应的关键物种)的一般方案。接下来,描述由活性钌-氧代物质形成O-O键的机理。然后,我们讨论了降低水氧化反应开始电位的策略。我们希望本《聚焦评论》将为朝着可持续能源转换系统的高效催化剂的进一步发展做出贡献。

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