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溶剂化效应对用于气体分离的基于 PIM-1 的 MMMS 的渗透和老化性能的影响。

Solvation Effects on the Permeation and Aging Performance of PIM-1-Based MMMs for Gas Separation.

机构信息

Department of Chemical Engineering , Monash University , Clayton , Victoria 3169 , Australia.

CSIRO , Bag 10 , Clayton South , Victoria 3169 , Australia.

出版信息

ACS Appl Mater Interfaces. 2019 Feb 13;11(6):6502-6511. doi: 10.1021/acsami.8b19207. Epub 2019 Feb 4.

Abstract

Membranes are particularly attractive for lowering the energy intensity of separations as they eliminate phase changes. While many tantalizing polymers are known, limitations in selectivity and stability slightly preclude further development. Mixed-matrix membranes may address these shortcomings. Key to their realization is the intimate mixing between the polymer and the additive to eliminate nonselective transport, improve selectivity, and resist physical aging. Polymers of intrinsic microporosity (PIMs) have inherently promising gas transport properties. Here, we show that porous additives can improve transport and resist aging in PIM-1. We develop a simple, low-cost, and scalable hyper-cross-linked polymer (poly-dichloroxylene, pDCX), which was hydroxylated to form an intimate mixture with the polar PIM-1. Solvent variation allowed control of physical aging rates and improved selectivity for smaller gases. This detailed study has allowed many interactions within mixed matrix membranes to be directly elucidated and presents a practical means to stabilize porous polymers for separation applications.

摘要

膜在降低分离的能量强度方面特别有吸引力,因为它们可以消除相变化。虽然有许多诱人的聚合物是已知的,但选择性和稳定性的限制稍微阻止了进一步的发展。混合基质膜可能会解决这些缺点。实现这一目标的关键是聚合物和添加剂之间的紧密混合,以消除非选择性传输,提高选择性,并抵抗物理老化。本征微孔聚合物(PIMs)具有固有的有前途的气体传输性能。在这里,我们表明多孔添加剂可以改善 PIM-1 的传输和抵抗老化。我们开发了一种简单、低成本和可扩展的超交联聚合物(聚二氯二甲苯,pDCX),它被羟基化形成与极性 PIM-1 的紧密混合物。溶剂变化允许控制物理老化速率并提高对较小气体的选择性。这项详细的研究允许直接阐明混合基质膜内的许多相互作用,并为用于分离应用的多孔聚合物的稳定提供了一种实用的方法。

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