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首页> 外文期刊>Separation and Purification Technology >Molecular design and characterization of new polyimides based on binaphthyl-ether diamines for gas separation
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Molecular design and characterization of new polyimides based on binaphthyl-ether diamines for gas separation

机译:基于二氯二醚二胺的新型聚酰亚胺的分子设计与鉴定气体分离

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摘要

In this study, a series of new binaphthyl-ether diamine monomers were designed, synthesized, and then incorporated into the polymeric backbone through polycondensation reaction with 6FDA to obtain polyimides (PIs). Experimental results demonstrated that the corresponding binaphthyl-ether based PIs possessed high molecule weights (M-n = 5.5 x 10(4)-1.2 x 10(5) g/mol), excellent thermal stability (T-d,T-5% = 435-522 degrees C), and good solubility in not only high-boiling point polar aprotic solvents (e.g. NMP, DMAc, and DMF) but also low boiling-point solvents (e.g.THF, CHCl3). Furthermore, the effects of varying polymer backbone geometry and substituent property on polymeric fractional free volumes (FFV) and gas transport properties were systematically investigated. As a result, all the new PIs showed excellent ideal gas selectivity values of CO2/CH4 (up to 69.7) and CO2/N-2 (up to 37.6). The CF3 substituting binaphthyl-ether PI membrane exhibited the highest gas permeability which could be attributed to the loose chain packing via the incorporation of contorted binaphthyl-ether unit and the bulky CF3 substituting groups. This work provides a new insight for binaphthyl unit-containing PIs and also shows a potential application in gas separation.
机译:在该研究中,设计了一系列新的二苯甲基醚二胺单体,合成,然后通过与6FDA的缩聚反应掺入聚合物主链中以获得聚酰亚胺(PIS)。实验结果表明,相应的二萘基 - 醚的PI具有高分子重量(Mn = 5.5×10(4)-1.2×10(5 )g / mol),热稳定性优异(Td,T-5%= 435-522 ℃),且良好的溶解度不仅是高沸点极性非质子溶剂(例如NMP,DMAC和DMF),而且是低沸点溶剂(EGHF,CHCL3)。此外,系统研究了不同聚合物骨架几何形状和取代基对聚合物分数自由体积(FFV)和气体运输性能的影响。结果,所有新的PIS都显示出优异的CO 2 / CH 4的理想气体选择性值(高达69.7)和CO2 / N-2(高达37.6)。替代二苯并乙基 - 醚PI膜的CF3表现出最高的气体渗透性,其通过掺入扭曲的二萘基 - 醚单元和庞大的CF3取代基团归因于松散的链包装。这项工作为含双硼基单位的PI提供了新的洞察力,并且还显示出气体分离的潜在应用。

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