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Coordination Adaptable Networks: Zirconium(IV) Carboxylates
Authors:Meenu Murali  Dimitri Berne  Dr Christine Joly-Duhamel  Dr Sylvain Caillol  Dr Eric Leclerc  Dr Eric Manoury  Dr Vincent Ladmiral  Prof Rinaldo Poli
Institution:1. CNRS, LCC (Laboratoire de Chimie de Coordination), UPS, INPT, Université de Toulouse, 205 route de Narbonne, 31077 Toulouse, Cedex 4, France;2. ICGM, Université de Montpellier, CNRS, ENSCM, Montpellier, France
Abstract:Vitrimers are 3D “covalent adaptable networks” (CANs) with flow properties thanks to thermally activated associative exchange reactions. This contribution introduces coordination adaptable networks, or CooANs, that are topologically related to metal–organic frameworks with octahedral Zr6 clusters as secondary building units in a carboxylic acid-functionalized acrylate-methacrylate copolymer matrix. A series of Zr-CooAN-x materials (x=percent of Zr6 loading relative to maximum capacity) was synthesized with x=5, 10, 15, 20, 25, 50 and 100. The mechanical and rheological investigations demonstrate vitrimer-like properties for x up to 50, the crosslink migration being ensured by carboxylate ligand exchange, with relaxation becoming slower as the Zr6 content is increased. The flow activation energy of Zr-CooAN-10 is 92.9±3.6 kJ mol?1. Rapid (30 min) hot-press reshaping occurs at temperatures in the 50–100 °C range under a 3-ton pressure and does not significantly alter the material properties.
Keywords:coordination adaptable networks  carboxylate exchange  rheology  vitrimers  zirconium
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