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以多孔聚合物网络为填料的共聚(邻羟基酰胺)和共聚(邻羟基酰胺 - 酰胺)热重排混合基质膜——它们的气体分离性能比较

Thermally Rearranged Mixed Matrix Membranes from Copoly(o-hydroxyamide)s and Copoly(o-hydroxyamide-amide)s with a Porous Polymer Network as a Filler-A Comparison of Their Gas Separation Performances.

作者信息

Soto Cenit, Comesaña-Gandara Bibiana, Marcos Ángel, Cuadrado Purificación, Palacio Laura, Lozano Ángel E, Álvarez Cristina, Prádanos Pedro, Hernandez Antonio

机构信息

Surfaces and Porous Materials (SMAP), Associated Research Unit to CSIC, Facultad de Ciencias, University of Valladolid, Paseo Belén 7, 47011 Valladolid, Spain.

Institute of Sustainable Processes (ISP), Dr. Mergelina s/n, 47011 Valladolid, Spain.

出版信息

Membranes (Basel). 2022 Oct 14;12(10):998. doi: 10.3390/membranes12100998.

Abstract

Copoly(o-hydroxyamide)s (HPA) and copoly(o-hydroxyamide-amide)s (PAA) have been synthesized to be used as continuous phases in mixed matrix membranes (MMMs). These polymeric matrices were blended with different loads (15 and 30 wt.%) of a relatively highly microporous porous polymer network (PPN). SEM images of the manufactured MMMs exhibited good compatibility between the two phases for all the membranes studied, and their mechanical properties have been shown to be good enough even after thermal treatment. The WAX results show that the addition of PPN as a filler up to 30% does not substantially change the intersegmental distance and the polymer packing. It seems that, for all the membranes studied, the free volume that determines gas transport is in the high end of the possible range. This means that gas flow occurs mainly between the microvoids in the polymer matrix around the filler. In general, both HPA- and PAA-based MMMs exhibited a notable improvement in gas permeability, due to the presence of PPN, for all gases tested, with an almost constant selectivity. In summary, although the thermal stability of the PAA is limited by the thermal stability of the polyamide side chain, their mechanical properties were better. The permeability was higher for the PAA membranes before their thermal rearrangement, and these values increased after the addition of moderate amounts of PPN.

摘要

共聚(邻羟基酰胺)(HPA)和共聚(邻羟基酰胺 - 酰胺)(PAA)已被合成用作混合基质膜(MMM)中的连续相。这些聚合物基质与不同负载量(15重量%和30重量%)的相对高度微孔的多孔聚合物网络(PPN)混合。所制备的MMM的SEM图像显示,对于所有研究的膜,两相之间具有良好的相容性,并且即使在热处理后,它们的机械性能也已显示出足够好。WAX结果表明,添加高达30%的PPN作为填料不会显著改变链段间距离和聚合物堆积。似乎对于所有研究的膜,决定气体传输的自由体积处于可能范围的高端。这意味着气体流动主要发生在填料周围聚合物基质中的微孔之间。一般来说,由于PPN的存在,基于HPA和PAA的MMM对于所有测试气体的气体渗透性都有显著提高,且选择性几乎恒定。总之,尽管PAA的热稳定性受聚酰胺侧链热稳定性的限制,但其机械性能更好。PAA膜在热重排之前的渗透率较高,并且在添加适量的PPN后这些值增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90d0/9609112/0043a518bf8f/membranes-12-00998-g001.jpg

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