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基于易得铁配位配合物的高效水氧化催化剂。

Efficient water oxidation catalysts based on readily available iron coordination complexes.

机构信息

Departament de Química, Universitat de Girona, Campus Montilivi, 17071 Girona, Spain.

出版信息

Nat Chem. 2011 Sep 4;3(10):807-13. doi: 10.1038/nchem.1140.

Abstract

Water oxidation catalysis constitutes the bottleneck for the development of energy-conversion schemes based on sunlight. To date, state-of-the-art homogeneous water oxidation catalysis is performed efficiently with expensive, toxic and earth-scarce transition metals, but 3d metal-based catalysts are much less established. Here we show that readily available, environmentally benign iron coordination complexes catalyse homogeneous water oxidation to give O(2), with high efficiency during a period of hours. Turnover numbers >350 and >1,000 were obtained using cerium ammonium nitrate at pH 1 and sodium periodate at pH 2, respectively. Spectroscopic monitoring of the catalytic reactions, in combination with kinetic studies, show that high valent oxo-iron species are responsible for the O-O forming event. A systematic study of iron complexes that contain a broad family of neutral tetradentate organic ligands identifies first-principle structural features to sustain water oxidation catalysis. Iron-based catalysts described herein open a novel strategy that could eventually enable sustainable artificial photosynthetic schemes.

摘要

水氧化催化是基于阳光的能量转换方案发展的瓶颈。迄今为止,最先进的均相水氧化催化是用昂贵、有毒和稀缺的过渡金属高效进行的,但基于 3d 金属的催化剂则不那么成熟。在这里,我们展示了易于获得的、环境友好的铁配合物可以高效地催化均相水氧化生成 O(2),在数小时的时间内具有高效率。使用硝酸铈铵在 pH 值为 1 和高碘酸钠在 pH 值为 2 时,分别获得了 >350 和 >1,000 的转化率数。通过催化反应的光谱监测,结合动力学研究,表明高价氧铁物种是负责 O-O 形成事件的原因。对包含广泛的中性四齿有机配体的铁配合物的系统研究确定了维持水氧化催化的第一性原理结构特征。本文所述的铁基催化剂开辟了一种新的策略,最终可能使可持续的人工光合作用方案成为可能。

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