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Fabrication of Swellable Organic–Inorganic Hybrid Polymers for CO<sub>2</sub>-Assisted Hydration of Propylene Epoxide

Lulu Dang, Huixia Yuan, Binshen Wang, Jingshun Zhang, Ziyi Wang, Guohua Gao

2023ACS Applied Materials & Interfaces14 citationsDOI

Abstract

Swelling is a very common phenomenon in organic substances. However, the swelling behaviors of inorganic substances had rarely been reported. In this study, a new type of swellable organic–inorganic hybrid polymer (PIL@CHT) was designed and successfully synthesized through free-radical copolymerization of polymerizable phosphonium ionic liquid monomer and vinyl-functionalized hydrotalcite (CHT). The swelling behaviors of PIL@CHT in various solvents with a wide range of Hansen solubility parameters (δ T ) were investigated, and PIL@CHT exhibited excellent swellable capacity in the solvents with δ T > 24.4 MPa 1/2 . The swollen state of the hybrid PIL@CHT in water presented a network structure with a diameter of approximately 8–12 μm, and CHT particles were well dispersed to the channel of PIL. PIL@CHT was applied to catalyze the CO 2 -assisted hydration of propylene oxide (PO), in which a cascade reaction including the cycloaddition of CO 2 and PO and the subsequent hydrolysis of propylene carbonate (PC) occurred. PIL@CHT, combining the active sites of PIL and CHT, synergistically catalyzed this cascade reaction and achieved a high yield (93.0%) and selectivity (98.2%) of 1,2-propanediol (1,2-MPG) under a low H 2 O/PO ratio of 1.5/1. Moreover, the catalyst could be recycled seven times without any significant loss of catalytic activities and had good substrate generality.

Topics & Concepts

Propylene oxidePropylene carbonateMaterials scienceIonic liquidMonomerEpichlorohydrinPolymer chemistryCatalysisPhosphoniumEpoxidePolymerHydrolysisSwellingCopolymerSolubilityOrganic chemistryChemical engineeringChemistryElectrodePhysical chemistryElectrochemistryEngineeringComposite materialEthylene oxideCarbon dioxide utilization in catalysisLayered Double Hydroxides Synthesis and ApplicationsCovalent Organic Framework Applications