Konnertz Nora, Ding Yi, Harrison Wayne J, Budd Peter M, Schönhals Andreas, Böhning Martin
Bundesanstalt für Materialforschung und-prüfung (BAM), Unter den Eichen 87, 12205 Berlin, Germany.
School of Chemistry, University of Manchester, Manchester M13 9PL, U.K.
ACS Macro Lett. 2016 Apr 19;5(4):528-532. doi: 10.1021/acsmacrolett.6b00209. Epub 2016 Apr 7.
The increasing demand for energy efficient separation processes fosters the development of new high performance polymers as selective separation layers for membranes. PIM-1 is the archetypal representative of the class of polymers of intrinsic microporosity (PIM) which are considered most promising in this sector, especially for gas separations. Since their introduction, PIMs stimulated a vast amount of research in this field and meanwhile evolved to the state-of-the-art in membrane technology for gas separation. The major obstacle for extending the practical membrane application is their strong tendency to physical aging. For the first time, investigations by broadband dielectric spectroscopy (BDS) addressing molecular dynamics and conductivity in PIM-1 are presented. As chain packing during film formation from the casting solution and physical aging are key factors determining the separation performance of PIMs as membrane materials, characterization of the molecular mobility in such materials as revealed by BDS will provide valuable information for further development and optimization.
对节能分离过程日益增长的需求推动了新型高性能聚合物的开发,作为膜的选择性分离层。PIM-1是固有微孔聚合物(PIM)类别的典型代表,这类聚合物在该领域被认为最具前景,尤其是在气体分离方面。自引入以来,PIMs激发了该领域大量的研究,同时已发展成为气体分离膜技术的前沿。扩展膜实际应用的主要障碍是它们强烈的物理老化倾向。首次展示了通过宽带介电谱(BDS)对PIM-1中的分子动力学和电导率进行的研究。由于从浇铸溶液成膜过程中的链堆积和物理老化是决定PIMs作为膜材料分离性能的关键因素,BDS揭示的此类材料中分子流动性的表征将为进一步开发和优化提供有价值的信息。