A porous 3D selectively fluorinated framework (F-PAF1), robust yet flexible and with a surface area of 2050 m(2) g(-1), was synthesised by condensation of an ad hoc prepared fluorinated tetraphenylmethane (TPM) monomer to ensure homogenously distributed C-F dipoles in the swellable architecture. Tetradentate TPM was also the comonomer for the reaction with fluorinated difunctional monomers to obtain frameworks (FMFs) with a controlled amount of regularly spaced reorientable C-F dipoles. The isosteric heat of adsorption of CO2 was increased by 53% by even moderate C-F dipole insertion, with respect to the non-fluorinated frameworks. CO2/N-2 selectivity was also increased up to a value of 50 for the difluoro-containing comonomer. Moreover, methane shows optimal interaction energies of 24 kJ mol(-1).

Fluorinated porous organic frameworks for improved CO2 and CH4 capture / Comotti, A.; Castiglioni, F.; Bracco, S.; Perego, J.; Pedrini, A.; Negroni, M.; Sozzani, P.. - In: CHEMICAL COMMUNICATIONS. - ISSN 1359-7345. - 55:61(2019), pp. 8999-9002. [10.1039/c9cc03248g]

Fluorinated porous organic frameworks for improved CO2 and CH4 capture

Pedrini A.;Sozzani P.
2019-01-01

Abstract

A porous 3D selectively fluorinated framework (F-PAF1), robust yet flexible and with a surface area of 2050 m(2) g(-1), was synthesised by condensation of an ad hoc prepared fluorinated tetraphenylmethane (TPM) monomer to ensure homogenously distributed C-F dipoles in the swellable architecture. Tetradentate TPM was also the comonomer for the reaction with fluorinated difunctional monomers to obtain frameworks (FMFs) with a controlled amount of regularly spaced reorientable C-F dipoles. The isosteric heat of adsorption of CO2 was increased by 53% by even moderate C-F dipole insertion, with respect to the non-fluorinated frameworks. CO2/N-2 selectivity was also increased up to a value of 50 for the difluoro-containing comonomer. Moreover, methane shows optimal interaction energies of 24 kJ mol(-1).
2019
Fluorinated porous organic frameworks for improved CO2 and CH4 capture / Comotti, A.; Castiglioni, F.; Bracco, S.; Perego, J.; Pedrini, A.; Negroni, M.; Sozzani, P.. - In: CHEMICAL COMMUNICATIONS. - ISSN 1359-7345. - 55:61(2019), pp. 8999-9002. [10.1039/c9cc03248g]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11381/2867321
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