Approaches and challenges in the synthesis of three-dimensional covalent-organic frameworks

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Abstract

Covalent organic frameworks, cross-linked crystalline polymers constructed from rigid organic precursors connected by covalent interactions, have emerged as a promising class of nanoporous materials owing to their highly desirable combination of attributes, including facile chemical tunability, structural diversity, and excellent stability. Despite the distinct advantages offered by three-dimensional covalent organic frameworks, research efforts have predominantly focused on the more synthetically-accessible, two-dimensional variants. Here we present an overview of synthetic approaches to yield three-dimensional covalent organic frameworks, identify synthetic obstacles that have hindered progress in the field and recently-employed methods to address them, and propose alternative techniques to circumvent these synthetic challenges.

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Ma, X., & Scott, T. F. (2018, December 1). Approaches and challenges in the synthesis of three-dimensional covalent-organic frameworks. Communications Chemistry. Springer Nature. https://doi.org/10.1038/s42004-018-0098-8

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