Articolo in rivista, 2021, ENG, 10.3390/membranes11070463

Hyper cross-linked polymers as additives for preventing aging of pim-1 membranes

Begni F.; Lasseuguette E.; Paul G.; Bisio C.; Marchese L.; Gatti G.; Ferrari M.-C.

Dipartimento di Scienze e Innovazione Tecnologica, Università degli Studi del Piemonte Orientale "Amedeo Avogadro", Viale Teresa Michel 11, Alessandria, 15121, Dipartimento di Scienze e Innovazione Tecnologica, Università degli Studi del Piemonte Orientale "Amedeo Avogadro", Viale Teresa Michel 11, 15121, Alessandria, Italy;, , Italy; School of Engineering, University of Edinburgh, Robert Stevenson Road, Edinburgh, EH9 3FB, School of Engineering, University of Edinburgh, Robert Stevenson Road, Edinburgh, EH9 3FB, UK;, , United Kingdom; CNR-SCITEC Instituto di Scienze e Tecnologie Chimiche "G. Natta", Via C. Golgi 19, Milano, 20133, CNR-SCITEC Instituto di Scienze e Tecnologie Chimiche "G. Natta", Via C. Golgi 19, 20133, Milano, Italy, , Italy

Mixed-matrix membranes (MMMs) are membranes that are composed of polymers embedded with inorganic particles. By combining the polymers with the inorganic fillers, improvements can be made to the permeability compared to the pure polymer membranes due to new pathways for gas transport. However, the fillers, such as hyper cross-linked polymers (HCP), can also help to reduce the physical aging of the MMMs composed of a glassy polymer matrix. Here we report the synthesis of two novel HCP fillers, based on the Friedel-Crafts reaction between a tetraphenyl methane monomer and a bromomethyl benzene monomer. According to the temperature and the solvent used during the reaction (dichloromethane (DCM) or dichloroethane (DCE)), two different particle sizes have been obtained, 498 nm with DCM and 120 nm with DCE. The change in the reaction process also induces a change in the surface area and pore volumes. Several MMMs have been developed with PIM-1 as matrix and HCPs as fillers at 3% and 10wt % loading. Their permeation performances have been studied over the course of two years in order to explore physical aging effects over time. Without filler, PIM-1 exhibits the classical aging behavior of polymers of intrinsic microporosity, namely, a progressive decline in gas permeation, up to 90% for CO permeability. On the contrary, with HCPs, the physical aging at longer terms in PIM-1 is moderated with a decrease of 60% for CO permeability.C spin-lattice relaxation times (T1) indicates that this slowdown is related to the interactions between HCPs and PIM-1.

Membranes (Basel) 11

Keywords

polymers, aging, smart materials

CNR authors

Bisio Chiara

CNR institutes

SCITEC – Istituto di Scienze e Tecnologie Chimiche "Giulio Natta"

ID: 462026

Year: 2021

Type: Articolo in rivista

Creation: 2022-01-05 21:45:13.000

Last update: 2022-06-24 16:03:29.000

CNR authors

External IDs

CNR OAI-PMH: oai:it.cnr:prodotti:462026

DOI: 10.3390/membranes11070463

Scopus: 2-s2.0-85109216889