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Water Splitting by Visible Light: A Nanophotocathode for Hydrogen Production

机译:可见光分解水:用于制氢的纳米光电阴极

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摘要

Efficient production of solar fuels is an imperative for meeting future fossil-fuel-free energy demands. Hydrogen that is derived from the splitting of water by solar energy is clearly attractive as a clean energy vector, and there have been many attempts to construct viable molecular and biomolecular devices for photohydrogen production. A common approach in the construction of such devices is the utilization of tris(bipyridine)ruthenium, zinc porphyrin, or related molecular materials as photosensitizers in conjunction with a tethered or free electrocatalyst or enzymic system. Apart from cost, such systems suffer from having limited lifetimes, which may be attributed at least in part to the intrinsic reactivity of the organic N-donor ligands in the radical anion form of the photoexcited state and photo-degradation pathways.
机译:为了满足未来无化石燃料的能源需求,高效生产太阳能燃料势在必行。作为清洁能源载体,由太阳能将水分解产生的氢显然很有吸引力,并且已经进行了许多尝试来构建可行的分子和生物分子装置以生产光氢。构造此类装置的常用方法是将三(联吡啶)钌,卟啉锌或相关分子材料作为光敏剂与束缚或游离的电催化剂或酶系统结合使用。除了成本之外,这种系统的寿命有限,这至少可以部分归因于光激发态和光降解途径的自由基阴离子形式的有机N-给体配体的固有反应性。

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