首页> 外文期刊>ACS applied materials & interfaces >PEG/PPG-PDMS-Based Cross-Linked Copolymer Membranes Prepared by ROMP and In Situ Membrane Casting for CO2 Separation: An Approach to Endow Rubbery Materials with Properties of Rigid Polymers
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PEG/PPG-PDMS-Based Cross-Linked Copolymer Membranes Prepared by ROMP and In Situ Membrane Casting for CO2 Separation: An Approach to Endow Rubbery Materials with Properties of Rigid Polymers

机译:通过ROMP和原位膜浇铸制备的基于PEG / PPG-PDMS的交联共聚物膜,用于CO2分离:赋予橡胶材料具有刚性聚合物性能的方法

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摘要

Rubbery polymer membranes prepared from CO2-philic PEO and/or highly permeable PDMS are desired for efficient CO2 separation from light gases (CH4 and N-2). Poor mechanical properties and size-sieving ability, however, limit their application in gas separation applications. Cross-linked rubbery polymer-based gas separation membranes with a low T-g based on both PEG/PPG and PDMS units with various compositions between these two units are prepared for the first time in this work by ring-opening metathesis polymerization type cross-linking and in situ membrane casting. The developed membranes display excellent CO2 separation performance with CO2 permeability ranging from 301 to 561 Barrer with excellent CO2/N-2 selectivity ranging from 50 to 59, overcoming the Robeson upper bound (2008). The key finding underlying the excellent performance of the newly developed cross-linked x(PEG/PPG:PDMS) membranes is the formation of a well-connected interlocked network structure, which endows the rubbery materials with the properties of rigid polymers, e.g., size-sieving ability and high thermomechanical stability. Moreover, the membrane shows long-term antiaging performance of up to eight months and antiplasticization behavior up to 25 atm pressure.
机译:期望由CO 2-纤维PEO和/或高度渗透性PDMS制备的橡胶状聚合物膜,用于从轻气体(CH 4和N-2)的有效CO 2分离。然而,机械性能差和尺寸筛分能力极差限制在气体分离应用中的应用。通过开环复分解聚合类型交联和具有以下两个单元之间的PEG / PPG和PDMS单元的交联橡胶聚合物基气体分离膜,其基于PEG / PPG和具有各种组合物的不同组合物。原位膜铸造。发育膜显示出优异的CO 2分离性能,其CO 2渗透率范围为301至561个漏洞,其优异的CO 2 / N-2选择性范围为50至59,克服罗伯森上染料(2008)。潜在地发现新开发的交联X(PEG / PPG:PDMS)膜的优异性能是形成良好连接的互锁网络结构,其与刚性聚合物的性质一起赋予橡胶状材料,例如尺寸 - 能力和高热机械稳定性。此外,该膜显示长期抗衰率的性能,最多为八个月,抗塑化行为高达25 atm压力。

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