| Literature DB >> 32178305 |
Alexandra Pulyalina1, Ilya Faykov1, Vera Nesterova1, Mikhail Goikhman2, Irina Podeshvo2, Nairi Loretsyan2, Alexander Novikov1, Iosif Gofman2, Alexander Toikka1, Galina Polotskaya1,2.
Abstract
The wide possibilities of designing a chemical structure and creating complexes with transition metals make polymers of heteroaromatic structure interesting objects, from both scientific and practical aspects. In this work, modern biquinoline-containing polymers, namely polyester amide (PEA) and its metal-polymer complex (PEA-Cu(I)), were synthesized and used to form dense flat membranes. A comparative study of their morphology, same physical properties (density, free volume, and contact angles), and thermomechanical characteristics was carried out. The transport properties of the modern membranes were studied during pervaporation, to solve a problem of n-heptane isolation from its binary mixtures with thiophene and methanol. It was shown that only the PEA membrane is selective for the separation of thiophene impurities from the mixture with n-heptane. In pervaporation of methanol/n-heptane mixture, the РЕА-Cu(I) membrane exhibits significantly higher pervaporation separation index, as compared with that of the РЕА membrane.Entities:
Keywords: membranes; metal–polymer complex; n-heptane isolation; pervaporation; polyester amide
Year: 2020 PMID: 32178305 DOI: 10.3390/polym12030645
Source DB: PubMed Journal: Polymers (Basel) ISSN: 2073-4360 Impact factor: 4.329