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Boosting gas separation performance and suppressing the physical aging of polymers of intrinsic microporosity (PIM-1) by nanomaterial blending

机译:提高性能和气体分离抑制聚合物的物理老化内在微孔率(PIM-1)纳米材料混合

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摘要

In recent decades, polymers of intrinsic microporosity (PIMs), especially the firstly introduced PIM-1, have been actively explored for various membrane-based separation purposes and widely recognized as the next generation membrane materials of choice for gas separation due to their ultra-permeable characteristics. Unfortunately, the polymers suffer substantially the negative impacts of physical aging, a phenomenon that is primarily noticeable in high free volume polymers. The phenomenon occurs at the molecular level, which leads to changes in the physical properties, and consequently the separation performance and membrane durability. This review discusses the strategies that have been employed to manage the physical aging issue, with a focus on the approach of blending with nanomaterials to give mixed matrix membranes. A detailed discussion is provided on the types of materials used, their inherent properties, the effects on gas separation performance, and their benefits in the suppression of the aging problem.
机译:近几十年来,内在的聚合物微孔率(pim),尤其是第一介绍了PIM-1,一直积极探索各种目的和膜基分离公认的下一代膜气体分离由于材料的选择他们ultra-permeable特征。不幸的是,聚合物遭受显著物理老化的负面影响,在高的现象,主要是明显的聚合物自由体积。分子水平上,从而导致的变化的物理性质,因此膜分离性能和耐久性。本文讨论的策略被雇佣来管理物理老化问题,重点是方法的混合纳米材料给混合基质膜。提供详细讨论的类型材料,他们的固有属性,对气体分离性能的影响,以及他们的好处的抑制老化问题。

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