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通过析氢光催化环化作用来改变负载染料胶囊中亚胺的氧化电位

Modifying the Oxidative Potentials of Imines in a Dye Loaded Capsule for Photocatalytic Cyclization with Hydrogen Evolution.

作者信息

Yang Yang, Li Hanning, Shi Youpeng, Wu Yuchen, Jing Xu, Duan Chunying

机构信息

School of Chemistry, Dalian University of Technology, Dalian, 116024, China.

State Key Laboratory of Coordination Chemistry, Nanjing University, Nanjing, 210093, China.

出版信息

Angew Chem Int Ed Engl. 2024 Mar 11;63(11):e202319605. doi: 10.1002/anie.202319605. Epub 2024 Feb 6.

DOI:10.1002/anie.202319605
PMID:38217331
Abstract

Modifying redox potential of substrates and intermediates to balance pairs of redox steps are important stages for multistep photosynthesis but faced marked challenges. Through co-clathration of iridium photosensitizer and imine substrate within one packet of a metal-organic capsule to shift the redox potentials of substrate, herein, we reported a multiphoton enzymatic strategy for the generation of heterocycles by intramolecular C-X hydrogen evolution cross-couplings. The cage facilitated a pre-equilibrium substrate-involving clathrate that cathodic shifts the oxidation potential of the substrate-dye-host ternary complex and configuration inversion of substrate via spatial constraints in the confined space. The new two photon excitation strategy enabled the precise control of the multistep electron transfer between each pair (photosensitizer, substrate and the capsule), endowing the catalytic system proceeding smoothly with an enzymatic fashion. Three kinds of 2-subsituted (-OH, -NH , and -SH) imines and N-aryl enamines all give the corresponding cyclization products efficiently under visible light irradiation, demonstrating the promising of the microenvironment driven thermodynamic activation in the host-dye-substrate ternary for synergistic combination of multistep photocatalytic transformations.

摘要

调节底物和中间体的氧化还原电位以平衡氧化还原步骤对是多步光合作用的重要阶段,但面临着显著挑战。通过将铱光敏剂和亚胺底物共包合在一个金属有机胶囊中以改变底物的氧化还原电位,在此,我们报道了一种通过分子内C-X析氢交叉偶联生成杂环的多光子酶促策略。该笼促进了一种涉及底物的包合物的预平衡,通过受限空间中的空间限制使底物-染料-主体三元复合物的氧化电位发生阴极移动,并使底物构型反转。这种新的双光子激发策略能够精确控制每一对(光敏剂、底物和胶囊)之间的多步电子转移,使催化体系以酶促方式顺利进行。三种2-取代(-OH、-NH 和 -SH)亚胺和N-芳基烯胺在可见光照射下均能高效地得到相应的环化产物,证明了主体-染料-底物三元体系中微环境驱动的热力学活化在多步光催化转化协同组合方面的潜力。

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