JOURNAL ARTICLE

Toward azo-linked covalent organic frameworks by developing linkage chemistry via linker exchange

Zhi‐Bei ZhouPeng‐Ju TianJin YaoYa LuQiao-Yan QiXin Zhao

Year: 2022 Journal:   Nature Communications Vol: 13 (1)Pages: 2180-2180   Publisher: Nature Portfolio

Abstract

Abstract Exploring new linkage chemistry for covalent organic frameworks (COFs) provides a strong driving force to promote the development of this emerging class of crystalline porous organic materials. Herein we report a strategy to synthesize COFs with azo linkage, one of the most important functional unit in materials science but having not yet been exploited as a linkage of COFs. This strategy is developed on the basis of in situ linker exchange, by which imine-linked COFs are completely transformed into azo-linked COFs (Azo-COFs). Moreover, distinct properties of Azo-COFs from their corresponding imine-linked precursors are observed, indicating unique property of Azo-COFs. This strategy provides a useful approach to develop new linkage chemistry for COFs. It also has established a synthetic method for azo-linked COFs, which not only enriches the family of COFs but also offers a platform to explore properties and applications of this class of crystalline porous conjugated polymers.

Keywords:
Covalent bond Imine Linker Linkage (software) Dynamic covalent chemistry Chemistry Conjugated system Combinatorial chemistry Polymer Nanotechnology Materials science Organic chemistry Computer science Catalysis Molecule

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130
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51
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0.99
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Citation History

Topics

Covalent Organic Framework Applications
Physical Sciences →  Materials Science →  Materials Chemistry
Metal-Organic Frameworks: Synthesis and Applications
Physical Sciences →  Chemistry →  Inorganic Chemistry
Luminescence and Fluorescent Materials
Physical Sciences →  Materials Science →  Materials Chemistry
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