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具有可调节桥连位置的共价有机框架用于可见光照射下光催化将CO还原为丙烯

Covalent Organic Frameworks with Tunable Bridge Positions for Photocatalytic CO Reduction to Propylene Under Visible Light Illumination.

作者信息

Huang Xiaoyan, Chen Yizheng, Xie Xiangjing, Song Ting

机构信息

Intelligent Textile Institute of Innovation, Hunan Institute of Engineering, Xiangtan, 411104, P. R. China.

Key Laboratory for Green Organic Synthesis and Application of Hunan Province, Key Laboratory of Environmentally Friendly Chemistry and Application of Ministry of Education, College of Chemistry, Xiangtan University, Xiangtan, 411105, P. R. China.

出版信息

Small. 2025 Feb;21(6):e2408817. doi: 10.1002/smll.202408817. Epub 2024 Dec 23.

Abstract

The use of sunlight to convert CO into multi-carbon fuels, particularly propylene, is considered a sustainable carbon cycle pathway, but propylene requires a multi-electron-coupled proton reaction process that has not been reported. Herein, two covalent organic frameworks (DA-COF and DP-COF) are prepared by varying the bridging positions of anthraquinone conjugated units. The experimental results show that the neighbouring bridge in DA-COF forms a unique cleavage structure like an enzyme catalyst, which can provide an efficient microenvironment for the reduction reaction to trap protons. At the same time, the neighbor bridging in DA-COF can form an electron donor-electron acceptor structure to accelerate the photogenerated carrier migration. As a result, DA-COF exhibits excellent visible light propylene production with a yield of 270.54 µmol g and no C₃H₆ product is detected by the DP-COF during the reduction process. This study presents a novel avenue for the production of high value-added multi-carbon products using photocatalysis.

摘要

利用阳光将一氧化碳转化为多碳燃料,特别是丙烯,被认为是一种可持续的碳循环途径,但丙烯的生成需要一个尚未见报道的多电子耦合质子反应过程。在此,通过改变蒽醌共轭单元的桥连位置制备了两种共价有机框架(DA-COF和DP-COF)。实验结果表明,DA-COF中相邻的桥连形成了一种类似酶催化剂的独特裂解结构,可为还原反应捕获质子提供一个高效的微环境。同时,DA-COF中的相邻桥连可形成电子供体-电子受体结构,以加速光生载流子的迁移。结果,DA-COF在可见光下表现出优异的丙烯生成性能,产率为270.54 μmol g,而在还原过程中DP-COF未检测到C₃H₆产物。本研究为利用光催化生产高附加值多碳产品提供了一条新途径。

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