Promoting energy transfer pathway in porphyrin-based sp2 carbon-conjugated covalent organic frameworks for selective photocatalytic oxidation of sulfide

IF 5.9 4区 化学 Q1 CHEMISTRY, INORGANIC & NUCLEAR
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Abstract

The sp2 carbon-conjugated covalent organic frameworks (COFs) with fully π-conjugated lattice and high chemical stability are promising heterogeneous photocatalysts. Herein, we report the design and synthesis of a novel palladium (Pd) porphyrin-based sp2 carbon-conjugated COF (PdPor-sp2c-COF) with an eclipsed AA stacking 2D structure. Interestingly, PdPor-sp2c-COF showed high crystallinity, good chemical stability, and a broad absorption of visible light. Moreover, compared to our previously reported metal-free Por-sp2c-COF, PdPor-sp2c-COF displays an improved photocatalytic performance in the selective aerobic oxidation of sulfides under green light irradiation. The systematic mechanistic studies testified that the enhanced photocatalytic activity can be ascribed to promoting energy transfer pathway over PdPor-sp2c-COF. Our study clearly demonstrates that it is favorable to promote the energy transfer pathway in sp2 carbon-conjugated COFs by using metalloporphyrin-based molecular building blocks. This work will inspire us to design and synthesize novel photocatalysts based on COFs for the selective aerobic oxidation.

Abstract Image

Abstract Image

促进卟啉基 Sp2 碳共轭共价有机框架中的能量转移途径,实现硫化物的选择性光催化氧化
具有完全π-共轭晶格和高化学稳定性的sp碳共轭有机框架(COFs)是一种前景广阔的异相光催化剂。在此,我们报告了一种新型钯(Pd)卟啉基 sp 碳共轭 COF(PdPor-spc-COF)的设计与合成,该 COF 具有黯淡的 AA 堆积二维结构。有趣的是,PdPor-spc-COF 结晶度高,化学稳定性好,对可见光有广泛的吸收。此外,与之前报道的无金属 Por-spc-COF 相比,PdPor-spc-COF 在绿光照射下选择性有氧氧化硫化物的光催化性能有所提高。系统的机理研究证明,PdPor-spc-COF 光催化活性的增强可归因于促进了能量转移途径。我们的研究清楚地表明,使用金属卟啉基分子构筑模块有利于促进 sp 碳共轭 COF 的能量转移途径。这项工作将启发我们设计和合成基于 COFs 的新型光催化剂,用于选择性有氧氧化。
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来源期刊
CiteScore
4.70
自引率
22.70%
发文量
5334
审稿时长
13 days
期刊介绍: Chinese Journal of Structural Chemistry “JIEGOU HUAXUE ”, an academic journal consisting of reviews, articles, communications and notes, provides a forum for the reporting and discussion of current novel research achievements in the fields of structural chemistry, crystallography, spectroscopy, quantum chemistry, pharmaceutical chemistry, biochemistry, material science, etc. Structural Chemistry has been indexed by SCI, CA, and some other prestigious publications.
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