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Modulation of pore shape and adsorption selectivity by ligand functionalization in a series of “rob”-like flexible metal–organic frameworks†
Javier Cepeda,Manuel Pérez-Mendoza,Antonio J. Calahorro,Nicola Casati,José Manuel Seco,Marta Aragones-Anglada,Peyman Z. Moghadam,David Fairen-Jimenez,Antonio Rodríguez-Diéguez
Journal of Materials Chemistry A Pub Date : 08/08/2018 00:00:00 , DOI:10.1039/C8TA04316G
Abstract

We report the synthesis of a new family of four new isoreticular metal–organic frameworks (MOFs) based on Cu–Cu paddle-wheel building units. The four MOFs contain 1D microchannels modulated by chemical functionalisation of a dicarboxylate ligand or the use of different bis-4,4′-pyridyl-like connectors behaving as ancillary linkers. A deep analysis of their CO2, H2 and CH4 adsorption properties, combining both experimental and grand canonical Monte Carlo isotherms as well as in situ synchrotron X-ray diffraction, shows variable adsorption behaviour towards the studied gases, with some materials acting as molecular sieves with virtually infinite selectivity.

Graphical abstract: Modulation of pore shape and adsorption selectivity by ligand functionalization in a series of “rob”-like flexible metal–organic frameworks
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