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Molecular Catalysts that Oxidize Water to Dioxygen

机译:将水氧化成双氧的分子催化剂

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摘要

During the past four years we have witnessed a revolution in the field of water-oxidation catalysis, in which well-defined molecules are opening up entirely new possibilities for the design of more rugged and efficient catalysts. This revolution has been stimulated by two factors: the urgent need for clean and renewable fuel and the intrinsic human desire to mimic nature's reactions, in this case the oxygen-evolving complex (OEC) of the photosystem II (PSII). Herein we give a short general overview of the established basis for the oxidation of water to dioxygen as well as presenting the new developments in the field. Furthermore, we describe the new avenues these developments are opening up with regard to catalyst design and performance, together with the new questions they pose, especially from a mechanistic perspective. Finally the challenges the field is facing are also discussed.
机译:在过去的四年中,我们见证了水氧化催化领域的一场革命,其中定义明确的分子为设计更坚固,高效的催化剂开辟了全新的可能性。这场革命受到两个因素的刺激:对清洁和可再生燃料的迫切需求以及人类模仿自然反应的内在渴望,在这种情况下,是光系统II(PSII)的析氧复合物(OEC)。在这里,我们简要概述了将水氧化为双氧的既定基础,并介绍了该领域的新进展。此外,我们从催化剂设计和性能方面描述了这些发展正在打开的新途径,以及它们提出的新问题,尤其是从机械角度出发。最后,还讨论了该领域面临的挑战。

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