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首页> 外文期刊>Angewandte Chemie >Metal-Organic Frameworks for the Exploitation of Distance between Active Sites in Efficient Photocatalysis
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Metal-Organic Frameworks for the Exploitation of Distance between Active Sites in Efficient Photocatalysis

机译:金属有机框架,用于利用有效光电催化在有效点之间的距离

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摘要

Discoveries of the accurate spatial arrangement of active sites in biological systems and cooperation between them for high catalytic efficiency are two major events in biology. However, precise tuning of these aspects is largely missing in the design of artificial catalysts. Here, a series of metal-organic frameworks (MOFs) were used, not only to overcome the limit of distance between active sites in bio-systems, but also to unveil the critical role of this distance for efficient catalysis. A linear correlation was established between photocatalytic activity and the reciprocal of inter active-site distance; a smaller distance led to higher activity. Vacancies created at selected crystallographic positions of MOFs promoted their photocatalytic efficiency. MOF-525-J33 with 15.6 angstrom inter active-site distance and 33 % vacancies exhibited unprecedented high turnover frequency of 29.5 h(-1) in visible-light-driven acceptorless dehydrogenation of tetrahydroquinoline at room temperature.
机译:在高催化效率之间发现生物系统中活性位点的准确空间排列是生物学中的两个主要事件。然而,在人造催化剂的设计中,这些方面的精确调整在很大程度上缺失。这里,使用一系列金属有机框架(MOF),不仅克服生物系统中活性位点之间的距离极限,还揭示了该距离的关键作用以获得有效的催化。在光催化活性和跨型静止距离之间的往复运动之间建立了线性相关性;较小的距离导致了更高的活动。在Mofs所选晶体位置创建的空缺促进了它们的光催化效率。 MOF-525-J33具有15.6埃际距离和33%空位的空位,在室温下的可见光型无碳啉的可见光型无可液体脱氢,表现出前所未有的高位频率为29.5小时(-1)。

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