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基于芘-炔的共轭多孔聚合物,通过骨架畸变介导产生单线态氧和超氧阴离子用于高选择性有机光合成

Pyrene-Alkyne-Based Conjugated Porous Polymers with Skeleton Distortion-Mediated ⋅O and O Generation for High-Selectivity Organic Photosynthesis.

作者信息

Li Guobang, Qiu Tianyu, Wu Qi, Zhao Zhao, Wang Lili, Li Yangguang, Geng Yun, Tan Huaqiao

机构信息

Key Laboratory of Polyoxometalate and Reticular Material Chemistry of Ministry of Education Faculty of Chemistry, Faculty of Physics, Northeast Normal University, Changchun, 130024, China.

State Key Laboratory for Superlattices and Microstructures Institute of Semiconductors, Chinese Academy of Sciences, Beijing, 100083, P. R. China.

出版信息

Angew Chem Int Ed Engl. 2024 Aug 12;63(33):e202405396. doi: 10.1002/anie.202405396. Epub 2024 Jul 9.

Abstract

Reactive oxygen species (ROS) play a crucial role in determining photocatalytic reaction pathways, intermediate species, and product selectivity. However, research on ROS regulation in polymer photocatalysts is still in its early stages. Herein, we successfully achieved series of modulations to the skeleton of Pyrene-alkyne-based (Tetraethynylpyrene (TEPY)) conjugated porous polymers (CPPs) by altering the linkers (1,4-dibromobenzene (BE), 4,4'-dibromobiphenyl (IP), and 3,3'-dibromobiphenyl (BP)). Experiments combined with theoretical calculations indicate that BE-TEPY exhibits a planar structure with minimal exciton binding energy, which favors exciton dissociation followed by charge transfer with adsorbed O to produce ⋅O . Thus BE-TEPY shows optimal photocatalytic activity for phenylboronic acid oxidation and [3+2] cycloaddition. Conversely, the skeleton of BP-TEPY is significantly distorted. Its planar conjugation decreases, intersystem crossing (ISC) efficiency increases, which makes it more prone for resonance energy transfer to generate O. Therefore, BP-TEPY displays best photocatalytic activity in [4+2] cycloaddition and thioanisole oxidation. Both above reactant conversion and its product selectivity exceed 99 %. This work systematically reveals the intrinsic structure-activity relationship among the skeleton structure of CPPs, excitonic behavior, and selective generation of ROS, providing new insights for the rational design of highly efficient and selective CPPs photocatalysts.

摘要

活性氧物种(ROS)在决定光催化反应途径、中间物种和产物选择性方面起着至关重要的作用。然而,聚合物光催化剂中ROS调控的研究仍处于早期阶段。在此,我们通过改变连接体(1,4-二溴苯(BE)、4,4'-二溴联苯(IP)和3,3'-二溴联苯(BP))成功实现了对芘-炔基(四乙炔基芘(TEPY))共轭多孔聚合物(CPPs)骨架的一系列调控。实验结合理论计算表明,BE-TEPY呈现出具有最小激子结合能的平面结构,这有利于激子解离,随后与吸附的O进行电荷转移以产生⋅O 。因此,BE-TEPY对苯硼酸氧化和[3+2]环加成显示出最佳的光催化活性。相反,BP-TEPY的骨架明显扭曲。其平面共轭减少,系间窜越(ISC)效率增加,这使得它更易于通过共振能量转移产生O。因此,BP-TEPY在[4+2]环加成和苯甲硫醚氧化中表现出最佳的光催化活性。上述两种反应物转化率及其产物选择性均超过99%。这项工作系统地揭示了CPPs骨架结构、激子行为和ROS选择性生成之间的内在构效关系,为高效和选择性的CPPs光催化剂的合理设计提供了新的见解。

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