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含联喹啉单元并与Cu(I)络合的新型聚酯酰胺膜:从有机混合物中分离正庚烷的合成、表征及应用

Novel Polyester Amide Membranes Containing Biquinoline Units and Complex with Cu(I): Synthesis, Characterization, and Approbation for n-Heptane Isolation from Organic Mixtures.

作者信息

Pulyalina Alexandra, Faykov Ilya, Nesterova Vera, Goikhman Mikhail, Podeshvo Irina, Loretsyan Nairi, Novikov Alexander, Gofman Iosif, Toikka Alexander, Polotskaya Galina

机构信息

Saint Petersburg State University, Institute of Chemistry, Universitetskiy pr. 26, 198504 Saint Petersburg, Russia.

Institute of Macromolecular Compounds, Russian Academy of Sciences, Bolshoy pr. 31, 199004 Saint Petersburg, Russia.

出版信息

Polymers (Basel). 2020 Mar 12;12(3):645. doi: 10.3390/polym12030645.

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 -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 -heptane. In pervaporation of methanol/heptane mixture, the РЕА-Cu(I) membrane exhibits significantly higher pervaporation separation index, as compared with that of the РЕА membrane.

摘要

从科学和实际应用的角度来看,设计化学结构以及与过渡金属形成配合物的多种可能性使得具有杂芳族结构的聚合物成为有趣的研究对象。在这项工作中,合成了含现代联喹啉的聚合物,即聚酯酰胺(PEA)及其金属聚合物配合物(PEA-Cu(I)),并用于制备致密的平板膜。对它们的形态、相同的物理性质(密度、自由体积和接触角)以及热机械特性进行了比较研究。在渗透汽化过程中研究了这些现代膜的传输性能,以解决从正庚烷与噻吩和甲醇的二元混合物中分离正庚烷的问题。结果表明,只有PEA膜对从与正庚烷的混合物中分离噻吩杂质具有选择性。在甲醇/正庚烷混合物的渗透汽化过程中,与PEA膜相比,PEA-Cu(I)膜表现出明显更高的渗透汽化分离指数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23e4/7182820/b1a82bfeea32/polymers-12-00645-g001.jpg

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