首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Interlocking a synthesized polymer and bifunctional filler containing the same polymer's monomer for conformable hybrid membrane systems
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Interlocking a synthesized polymer and bifunctional filler containing the same polymer's monomer for conformable hybrid membrane systems

机译:互锁合成的聚合物和双官能填料,其含有相同的聚合物单体,用于适应性的杂交膜系统

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摘要

The development of advanced functional materials is a growing field to improve the performance of mixed matrix membranes (MMMs) as energy efficient alternatives to the conventional gas separation membranes. Herein, a novel highly selective host-guest complex was synthesized by encapsulating a Schiff base macrocyclic copper complex in the FAU super-cages of zeolite 13X. The design strategy of the encapsulated complex is based on the utilization of the same polymer's monomer, durene diamine monomers, as the Schiff base ligand component to eliminate interfacial defects, and also improve the CO2-facilitated transport through the favorable functional groups. MMMs comprised of ([Cu(6L)](2+)@13X) and the as-synthesized 6FDA-durene polyimide were investigated. The MMM containing 15 wt% of the [Cu(6L)](2+)@13X complex resulted in the CO2 permeability of 1034.1 barrer with CO2/CH4 and CO2/N-2 selectivities of 42.2 and 38.3, respectively. These results are 127%, 173% and 173% higher than that of the pristine 6FDA-durene, which showed the CO2 permeability of 455.2 barrer with CO2/CH4 and CO2/N-2 selectivity of 15.4 and 14.0, respectively. Thus, the superior results of the present work suggest that encapsulated Schiff base transition metal complexes containing polymeric matrix monomers offer a new route to produce advanced functional fillers for highly effective gas separation MMMs.
机译:先进的功能材料的发展是一种越来越多的领域,以改善混合基质膜(MMM)作为传统气体分离膜的能量有效替代品的性能。在此,通过在沸石13X的FAU超笼中包封Schiff碱宏环铜络合物来合成一种新的高选择性宿主 - 客销综合体。包封复合物的设计策略基于相同的聚合物的单体,杜兰二胺单体的利用,作为席夫碱配体组分,以消除界面缺陷,并通过良好的官能团改善CO2促进的运输。研究了由([Cu(6L)](2 +)@ 13X)和合成的6FDA-杜肾聚酰亚胺的MMM进行研究。含有15wt%的[Cu(6L)](2 +)×13X复合物的MMM,得到1034.1个游离的CO 2 / CH 4和CO 2 / N-2选择性分别为42.2和38.3的渗透性。这些结果比原始6FDA-杜肾上腺素高出127%,173%和173%,其表明,455.2个漏气的CO 2 / CH4和CO 2 / N-2选择性分别为15.4和14.0。因此,本作工作的上级结果表明,含有聚合物基质单体的封装的席夫碱过渡金属配合物提供了一种用于生产高效气体分离MMM的先进功能填料的新途径。

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