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首页> 外文期刊>Angewandte Chemie >A Complex Perovskite-Type Oxynitride: The First Photocatalyst for Water Splitting Operable at up to 600 nm
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A Complex Perovskite-Type Oxynitride: The First Photocatalyst for Water Splitting Operable at up to 600 nm

机译:复杂的钙钛矿型氧氮化物:首个可在高达600 nm的波长进行水分解的光催化剂

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摘要

One of the simplest methods for splitting water into H-2 and O-2 with solar energy entails the use of a particulate-type semiconductor photocatalyst. To harness solar energy efficiently, a new water-splitting photocatalyst that is active over a wider range of the visible spectrum has been developed. In particular, a complex perovskite-type oxynitride, LaMgxTa1-xO1+3xN2-3x (x1/3), can be employed for overall water splitting at wavelengths of up to 600nm. Two effective strategies for overall water splitting were developed. The first entails the compositional fine-tuning of a photocatalyst to adjust the bandgap energy and position by forming a series of LaMgxTa1-xO1+3xN2-3x solid solutions. The second method is based on the surface coating of the photocatalyst with a layer of amorphous oxyhydroxide to control the surface redox reactions. By combining these two strategies, the degradation of the photocatalyst and the reverse reaction could be prevented, resulting in successful overall water splitting.
机译:用太阳能将水分解为H-2和O-2的最简单方法之一是使用颗粒型半导体光催化剂。为了有效地利用太阳能,已经开发了在更宽的可见光谱范围内具有活性的新型水分解光催化剂。特别是,复合钙钛矿型氧氮化物LaMgxTa1-xO1 + 3xN2-3x(x1 / 3)可用于最大波长为600nm的总水分解。开发了两种有效的整体水分解策略。第一种方法是通过形成一系列LaMgxTa1-xO1 + 3xN2-3x固溶体来对光催化剂进行组成微调,以调节带隙能量和位置。第二种方法是基于光催化剂的表面涂层有无定形羟基氧化物,以控制表面氧化还原反应。通过将这两种策略结合起来,可以防止光催化剂的降解和逆反应,从而成功地将水分解。

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