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金(I)配合物在光催化剂-free 的可见光介导的炔烃 1,2-双官能化反应中的双重作用:DFT 研究。

The Dual Role of Gold(I) Complexes in Photosensitizer-Free Visible-Light-Mediated Gold-Catalyzed 1,2-Difunctionalization of Alkynes: A DFT Study.

机构信息

Key Lab of Colloid and Interface Chemistry, Ministry of Education, Institute of Theoretical Chemistry, School of Chemistry and Chemical Engineering, Shandong University, Jinan, 250100, P.R. China.

出版信息

Chemistry. 2018 Sep 20;24(53):14119-14126. doi: 10.1002/chem.201803075. Epub 2018 Sep 12.

Abstract

Recently, a photosensitizer-free visible-light-mediated gold-catalyzed 1,2-difunctionalization of alkynes has been developed. However, mechanistic aspects of this unconventional photocatalytic reaction remain largely obscure. With the aid of density functional theory (DFT) and time-dependent (TD)DFT calculations, we mimicked the photosensitizer-free visible-light-mediated gold-catalyzed 1,2-difunctionalization of 1-phenyl-1-hexyne and focused on two fundamental questions: how does photoredox catalysis occur without assistance of an exogenous photosensitizer under visible light irradiation, and what is the detailed mechanism of the gold-catalyzed 1,2-difunctionalization of alkynes? The results reveal the dual role of the gold(I) complex in light-harvesting and catalysis, where a charge-transfer (CT) complex formed by the association of gold(I) catalyst with PhN BF acts as a photosensitizer, which can undergo an electronic transition between the gold(I) moiety and PhN BF of the CT complex into an excited electronic state and afford a charge-transfer exciplex. The oxidative quenching of the exciplex generates the gold(II) species and diazobenzene radical. The subsequent catalytic cycle proceeds via two parallel pathways, involving the radical addition to gold(II) and gold(I) centers, respectively, and in these two pathways the reductive elimination of gold(III) species is identified as the rate-determining step of the whole reaction. The present study could provide a new understanding for exogenous-photosensitizer-free visible-light-mediated gold-catalyzed processes.

摘要

最近,发展了一种无光敏剂可见光介导的炔烃 1,2-双官能化的金催化反应。然而,这种非常规光催化反应的机理方面仍然很大程度上不清楚。借助密度泛函理论(DFT)和含时(TD)DFT 计算,我们模拟了无外源光敏剂的可见光介导的金催化 1-苯基-1-己炔的 1,2-双官能化,并集中研究了两个基本问题:在可见光照射下,没有外源光敏剂的帮助,如何发生光氧化还原催化,以及金催化炔烃 1,2-双官能化的详细机理是什么?结果揭示了金(I)配合物在光捕获和催化中的双重作用,其中金(I)催化剂与 PhN BF 缔合形成的电荷转移(CT)配合物充当光敏剂,它可以在金(I)部分和 CT 配合物的 PhN BF 之间经历电子跃迁,进入激发态,并提供电荷转移激基复合物。激基复合物的氧化猝灭生成金(II)物种和重氮苯自由基。随后的催化循环通过两条平行途径进行,分别涉及自由基加成到金(II)和金(I)中心,在这两条途径中,金(III)物种的还原消除被确定为整个反应的速率决定步骤。本研究为外源光敏剂自由可见光介导的金催化过程提供了新的认识。

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