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具有超大孔的三维共价有机框架用于高效光催化

Three-Dimensional Covalent Organic Frameworks with Ultra-Large Pores for Highly Efficient Photocatalysis.

作者信息

Ding Jiehua, Guan Xinyu, Lv Jia, Chen Xiaohong, Zhang Yi, Li Hui, Zhang Daliang, Qiu Shilun, Jiang Hai-Long, Fang Qianrong

机构信息

State Key Laboratory of Inorganic Synthesis and Preparative Chemistry, Jilin University, Changchun 130012, P. R. China.

Department of Chemistry, University of Science and Technology of China, Hefei, Anhui 230026, P. R. China.

出版信息

J Am Chem Soc. 2023 Feb 8;145(5):3248-3254. doi: 10.1021/jacs.2c13817. Epub 2023 Jan 31.

Abstract

Benefiting from their unique structural merits, three-dimensional (3D) large-pore COF materials demonstrate high surface areas and interconnected large channels, which makes these materials promising in practical applications. Unfortunately, functionalization strategies and application research are still absent in these structures. To this end, a series of functional 3D -topologized COFs are designed based on porphyrin or metalloporphyrin moieties, named JUC-640-M (M = Co, Ni, or H). Interestingly, JUC-640-H exhibits a record-breaking low crystal density (0.106 cm g) among all crystalline materials, along with the largest interconnected pore size (4.6 nm) in 3D COFs, high surface area (2204 m g), and abundant exposed porphyrin moieties (0.845 mmol g). Inspired by the unique structural characteristics and photoelectrical performance, JUC-640-Co is utilized for the photoreduction of CO to CO and demonstrates a high CO production rate (15.1 mmol g h), selectivity (94.4%), and stability. It should be noted that the CO production rate of JUC-640-Co has exceeded those of all reported COF-based materials. This work not only produces a series of novel 3D COFs with large channels but also provides a new guidance for the functionalization and applications of COFs.

摘要

得益于其独特的结构优点,三维(3D)大孔共价有机框架(COF)材料具有高比表面积和相互连接的大通道,这使得这些材料在实际应用中具有广阔前景。不幸的是,这些结构中仍然缺乏功能化策略和应用研究。为此,基于卟啉或金属卟啉部分设计了一系列功能化的3D拓扑COF,命名为JUC-640-M(M = Co、Ni或H)。有趣的是,JUC-640-H在所有晶体材料中表现出破纪录的低晶体密度(0.106 cm³ g),同时在3D COF中具有最大的相互连接孔径(4.6 nm)、高比表面积(2204 m² g)和丰富的暴露卟啉部分(0.845 mmol g)。受其独特的结构特征和光电性能启发,JUC-640-Co被用于将CO光还原为CO,并表现出高CO产率(15.1 mmol g⁻¹ h⁻¹)、选择性(94.4%)和稳定性。应该注意的是,JUC-640-Co的CO产率已经超过了所有报道的基于COF的材料。这项工作不仅制备了一系列具有大通道的新型3D COF,还为COF的功能化和应用提供了新的指导。

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