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首页> 外文期刊>Angewandte Chemie >Structural Design Principle of Small-Molecule Organic Semiconductors for Metal-Free, Visible-Light-Promoted Photocatalysis
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Structural Design Principle of Small-Molecule Organic Semiconductors for Metal-Free, Visible-Light-Promoted Photocatalysis

机译:无金属,可见光促进的光催化小分子有机半导体的结构设计原理

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摘要

Herein, we report on the structural design principle of small-molecule organic semiconductors as metal-free, pure organic and visible light-active photocatalysts. Two series of electron-donor and acceptor-type organic semiconductor molecules were synthesized to meet crucial requirements, such as 1) absorption range in the visible region, 2) sufficient photoredox potential, and 3) long lifetime of photogenerated excitons. The photocatalytic activity was demonstrated in the intermolecular C-H functionalization of electron-rich heteroaromates with malonate derivatives. A mechanistic study of the light-induced electron transport between the organic photocatalyst, substrate, and the sacrificial agent are described. With their tunable absorption range and defined energy-band structure, the small-molecule organic semiconductors could offer a new class of metal-free and visible light-active photocatalysts for chemical reactions.
机译:在本文中,我们报告了小分子有机半导体作为无金属,纯有机和可见光活性光催化剂的结构设计原理。合成了两个系列的电子给体和受体型有机半导体分子以满足关键要求,例如1)在可见光区域的吸收范围,2)足够的光氧化还原电势和3)光生激子的长寿命。在富电子的杂芳酸酯与丙二酸酯衍生物的分子间C-H官能化中证明了光催化活性。描述了光诱导电子在有机光催化剂,底物和牺牲剂之间传输的机理。凭借其可调的吸收范围和确定的能带结构,小分子有机半导体可以为化学反应提供一类新型的无金属和可见光活性光催化剂。

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