烯烃链上的氰基取代基:促进而非抑制共价有机骨架的性能

IF 11.3 1区 化学 Q1 CHEMISTRY, PHYSICAL
Yongliang Yang, Na Luo, Shiyun Lin, Huan Yao and Yaqi Cai*, 
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引用次数: 10

摘要

人们普遍认为,烯烃链中的吸电子氰基会抑制共价有机骨架(COFs)的稳定性和π共轭性,这引起了人们对其光电性能的关注。然而,烯烃键结构与COFs性能之间的构效关系尚无定论。在这项工作中,设计和合成了具有相同三苯基三嗪构建块的亚胺,乙烯和丙烯腈连接的COFs。我们的工作表明,丙烯腈键的构建不仅提高了化学稳定性和光稳定性,而且还导致了显著的光电性能,在固态下的荧光量子产率达到了创纪录的35.37%。此外,丙烯腈连接使TTAN-COF/Pt NPs在析氢反应(11.94 mmol g-1 h-1;BET表面积为739.28 m2 g-1)和好氧氧化反应。本研究表明,与高π共轭的乙烯烯链相比,丙烯腈链可以显著提高COFs的光电性能和光催化活性,为光电功能材料的设计提供了有价值的参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Cyano Substituent on the Olefin Linkage: Promoting Rather than Inhibiting the Performance of Covalent Organic Frameworks

Cyano Substituent on the Olefin Linkage: Promoting Rather than Inhibiting the Performance of Covalent Organic Frameworks

It is generally believed that the electron-withdrawing cyano group in the olefin linkage would inhibit the stability and π-conjugation of covalent organic frameworks (COFs), which raises concerns about their optoelectronic properties. However, the structure–activity relationship between the structure of olefin linkages and properties of COFs is still inconclusive. In this work, imine-, vinylene-, and acrylonitrile-linked COFs with identical triphenyltriazine building blocks were designed and synthesized. Our work demonstrated that construction of acrylonitrile linkages not only enhanced the chemical stability and photostability but also led to remarkable optoelectronic properties with a record fluorescence quantum yield of 35.37% in the solid state. Further, the acrylonitrile linkage endows TTAN-COF/Pt NPs with superior and durable photocatalytic activity in both the hydrogen evolution reaction (11.94 mmol g–1 h–1; BET surface area, 739.28 m2 g–1) and aerobic oxidation reaction. This work demonstrates that the acrylonitrile linkage can significantly enhance the optoelectronic properties and photocatalytic activities of COFs compared with the highly π-conjugated vinylene linkage, providing a valuable reference for the design of optoelectronic functional materials.

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来源期刊
ACS Catalysis
ACS Catalysis CHEMISTRY, PHYSICAL-
CiteScore
20.80
自引率
6.20%
发文量
1253
审稿时长
1.5 months
期刊介绍: ACS Catalysis is an esteemed journal that publishes original research in the fields of heterogeneous catalysis, molecular catalysis, and biocatalysis. It offers broad coverage across diverse areas such as life sciences, organometallics and synthesis, photochemistry and electrochemistry, drug discovery and synthesis, materials science, environmental protection, polymer discovery and synthesis, and energy and fuels. The scope of the journal is to showcase innovative work in various aspects of catalysis. This includes new reactions and novel synthetic approaches utilizing known catalysts, the discovery or modification of new catalysts, elucidation of catalytic mechanisms through cutting-edge investigations, practical enhancements of existing processes, as well as conceptual advances in the field. Contributions to ACS Catalysis can encompass both experimental and theoretical research focused on catalytic molecules, macromolecules, and materials that exhibit catalytic turnover.
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