Publication | Closed Access
Dynamic Transformation between Covalent Organic Frameworks and Discrete Organic Cages
90
Citations
29
References
2020
Year
EngineeringImine CofsPorous PolymerChemistryChemical EngineeringMetal-organic PolyhedronPolymer ChemistryBiophysicsMaterials ScienceDynamic TransformationCovalent Bonded FrameworkMolecular EngineeringMacromolecular ArchitectureMetal-organic FrameworksLinker Exchange StrategyOrganic Material ChemistrySelf-assemblyPolymer ScienceMolecule-based MaterialCovalent Organic Frameworks
We propose a dynamic covalent chemistry (DCC)-induced linker exchange strategy for the structural transformation between covalent organic frameworks (COFs) and cages for the first time. Studies have shown that the COF-to-cage and cage-to-COF transformations were realized by using borate bonds and imine bonds, respectively, as linkages. Self-sorting experiments suggested that borate cages and imine COFs are thermodynamic minimum compounds. This research builds a bridge between discrete and polymeric organic scaffolds and broadens the knowledge of chemistry and materials for porous materials science.
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