首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Catalytic Water Oxidation by a Molecular Ruthenium Complex: Unexpected Generation of a Single-Site Water Oxidation Catalyst
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Catalytic Water Oxidation by a Molecular Ruthenium Complex: Unexpected Generation of a Single-Site Water Oxidation Catalyst

机译:分子钌配合物催化水氧化:单站点水氧化催化剂的意外生成。

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摘要

The increasing energy demand calls for the development of sustainable energy conversion processes. Here, the splitting of H2O to O-2 and H-2, or related fuels, constitutes an excellent example of solar-to-fuel conversion schemes. The critical component in such schemes has proven to be the catalyst responsible for mediating the four-electron oxidation of H2O to O-2. Herein, we report on the unexpected formation of a single-site Ru complex from a ligand envisioned to accommodate two metal centers. Surprising N-N bond cleavage of the designed dinuclear ligand during metal complexation resulted in a single-site Ru complex carrying a carboxylate amide motif. This ligand lowered the redox potential of the Ru complex sufficiently to permit H2O oxidation to be carried out by the mild one-electron oxidant [Ru(bpy)(3)](3+) (bpy = 2,2'-bipyridine). The work thus highlights that strongly electron-donating ligands are important elements in the design of novel, efficient H2O :oxidation catalysts.
机译:不断增长的能源需求要求开发可持续的能源转换过程。在这里,将H2O分解为O-2和H-2或相关燃料构成了太阳能转化为燃料的绝佳方案。事实证明,此类方案中的关键组分是负责介导H2O氧化为O-2的四电子氧化的催化剂。在本文中,我们报道了从设想到可容纳两个金属中心的配体意外形成单位Ru络合物的情况。在金属络合过程中,设计的双核配体发生令人惊讶的N-N键断裂,导致单位Ru络合物带有羧酸酰胺基序。该配体充分降低了Ru络合物的氧化还原电势,以允许温和的单电子氧化剂[Ru(bpy)(3)](3+)(bpy = 2,2'-联吡啶)进行H2O氧化。因此,这项工作强调了强供电子配体是设计新型高效H2O:氧化催化剂的重要元素。

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