Polymer-Driven Self-Templated Synthesis of Boronate-COF Hollow Spheres: Toward the Development of Size-Selective Nanoreactors
Abstract
Abstract Covalent organic frameworks are a family of porous crystalline structures gaining attention due to their promising applications. However, despite significant efforts, the synthesis and understanding of uniform and specific morphologies remain a challenge. Herein, we report the first self-templated synthesis of hollow spherical boronate ester-linked COFs-polymers. A time-dependent investigation reveals the formation of hollow spheres driven by an inside-out Ostwald ripening mechanism, exclusively for COF-10 in the presence of a catechol-poly(N-isopropylacrylamide) (catechol-PNIPAm) polymer. The synthesized hollow spheres show a hydrodynamic radius of 300 nm, an oriented crystallinity, and continuous hexagonal pore channels throughout the membrane, associated with a high surface area (~800 m2·g–1). Interestingly, the hollow sphere cavity enables the encapsulation of a fluorogenic, thiol-responsive dye while the porous membrane regulates the size-selective penetration of thiols. Only thiols of appropriate size can access the encapsulated dye, thereby triggering fluorescence restoration.
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Authors: Pauline Salaün, Bahae‐Eddine Mouloud, Élodie Richard, Vincent Mariani, Jean‐François Tahon, Ahmed Addad, Chloé Grazon, Patrice Woisel, Gaëlle Le Fer
Institutions: Centre National de la Recherche Scientifique, Université de Bordeaux, Institut Polytechnique de Bordeaux, Institut des Sciences Moléculaires, Institut Pasteur de Lille, Unité Matériaux et Transformations, Laboratoire de Chimie des Polymères Organiques