Tamaddondar Marzieh, Foster Andrew B, Carta Mariolino, Gorgojo Patricia, McKeown Neil B, Budd Peter M
Department of Chemistry, University of Manchester, M13 9PL Manchester, United Kingdom.
Department of Chemistry, College of Science, Swansea University, Grove Building, Singleton Park, SA2 8PP Swansea, United Kingdom.
ACS Appl Mater Interfaces. 2020 Oct 14;12(41):46756-46766. doi: 10.1021/acsami.0c13838. Epub 2020 Sep 29.
A low cross-link density (LCD) network-PIM-1, which offers high compatibility with the polymer of intrinsic microporosity PIM-1, is synthesized by a modified PIM-1 polycondensation that combines both a tetrafluoro- and an octafluoro-monomer. To maximize the advantages of utilizing such cross-linked PIM-1 fillers in PIM-1-based mixed matrix membranes (MMMs), a grafting route is used to decorate the LCD-network-PIM-1 (dispersed phase) with PIM-1 chains, to further enhance compatibility with the PIM-1 matrix. Mixed-gas CO/CH (1:1, v/v) separation results over 160 days of membrane aging confirm the success of a relatively short (24 h) grafting reaction in improving the initial CO separation performance, as well as hindering the aging of PIM-1/grafted-LCD-network-PIM-1 MMMs. For MMMs based on a 24 h grafting route, all the gas separation data surpass the 2008 Robeson upper bound by a significant margin, and the 160-day aged membranes show only 29% reduction from the initial CO permeability, which is substantially less than the equivalent losses of nearly 70% and 48% for PIM-1 and traditionally fabricated MMMs counterparts, respectively. These results demonstrate the potential of network-PIM components for obtaining much more stable gas separation performance over extended periods of time.
一种低交联密度(LCD)网络型PIM-1通过改进的PIM-1缩聚反应合成,该反应结合了四氟单体和八氟单体,与固有微孔聚合物PIM-1具有高度相容性。为了最大限度地发挥在基于PIM-1的混合基质膜(MMM)中使用此类交联PIM-1填料的优势,采用接枝路线用PIM-1链修饰LCD网络型PIM-1(分散相),以进一步增强与PIM-1基质的相容性。超过160天的膜老化后的混合气体CO/CH₄(1:1,v/v)分离结果证实,相对较短(24小时)的接枝反应成功提高了初始CO分离性能,并阻碍了PIM-1/接枝LCD网络型PIM-1 MMM的老化。对于基于24小时接枝路线的MMM,所有气体分离数据均大幅超过2008年的罗伯逊上限,且老化160天的膜的CO渗透率仅比初始值降低29%,这大大低于PIM-1和传统制备的MMM对应物分别近70%和48%的等效损失。这些结果证明了网络型PIM组件在长时间内获得更稳定气体分离性能的潜力。