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Targeted gas separations through polymer membrane functionalization

机译:通过聚合物膜功能化进行目标气体分离

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Gas separation membranes have been studied for several decades and are starting to find commercial acceptance. This review will focus on polymer functionalization to improve gas separation performance, namely, permeability, permselectivity, or both. The review will cover both "diffusivity controlled" and "solubility controlled" functionalization strategies; each strategy refers to the different mode of gas transport through the membrane. Diffusivity controlled functionalization strategies mainly involve control over free volume elements in amorphous polymers via promotion or inhibition of chain packing through functional groups. As such, the effects of this functionalization are typically confined to the well-known selectivity/permeability tradeoff. Solubility controlled modification strategies utilize functional groups that have strong chemical interactions with some of the penetrant molecules and offers an enhanced solution-diffusion or a non-solution-diffusion permeation pathway. This functionalization can potentially exceed the Robeson upper bound, but is often challenged by impurities and deactivation of the chemical functionality. (C) 2014 Elsevier B.V. All rights reserved.
机译:气体分离膜已经研究了数十年,并开始获得商业认可。这篇综述将集中在聚合物官能化上,以改善气体分离性能,即渗透率,渗透选择性或两者。审查将涵盖“扩散性控制”和“溶解度控制”功能化策略;每种策略均指气体通过膜的运输方式不同。扩散控制的官能化策略主要涉及通过促进或抑制通过官能团的链堆积来控制无定形聚合物中的自由体积元素。这样,该官能化的作用通常限于众所周知的选择性/渗透性折衷。溶解度控制的修饰策略利用与某些渗透剂分子具有强化学相互作用的官能团,并提供增强的溶液扩散或非溶液扩散渗透途径。该官能化可以潜在地超过Robeson上限,但是经常受到杂质和化学官能团失活的挑战。 (C)2014 Elsevier B.V.保留所有权利。

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