3D cage Cofs: A dynamic three-dimensional covalent organic framework with high-connectivity organic cage nodes

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Abstract

Three-dimensional (3D) covalent organic frameworks (COFs) are rare because there is a limited choice of organic building blocks that offer multiple reactive sites in a polyhedral geometry. Here, we synthesized an organic cage molecule (Cage-6NH2) that was used as a triangular prism node to yield the first cage-based 3D COF, 3D-CageCOF-1. This COF adopts an unreported 2-fold interpenetrated acs topology and exhibits reversible dynamic behavior, switching between a small-pore (sp) structure and a large-pore (lp) structure. It also shows high CO2 uptake and captures water at low humidity (<40%). This demonstrates the potential for expanding the structural complexity of 3D COFs by using organic cages as the building units.

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Zhu, Q., Wang, X., Clowes, R., Cui, P., Chen, L., Little, M. A., & Cooper, A. I. (2020). 3D cage Cofs: A dynamic three-dimensional covalent organic framework with high-connectivity organic cage nodes. Journal of the American Chemical Society, 142(39), 16842–16848. https://doi.org/10.1021/jacs.0c07732

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