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Mixing of immiscible polymers using nanoporous coordination templates

机译:使用纳米孔配位模板混合不混溶的聚合物

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摘要

The establishment of methodologies for the mixing of immiscible substances is highly desirable to facilitate the development of fundamental science and materials technology. Herein we describe a new protocol for the compatibilization of immiscible polymers at the molecular level using porous coordination polymers (PCPs) as removable templates. In this process, the typical immiscible polymer pair of polystyrene (PSt) and poly(methyl methacrylate) (PMMA) was prepared via the successive homopolymerizations of their monomers in a PCP to distribute the polymers inside the PCP particles. Subsequent dissolution of the PCP frameworks in a chelator solution affords a PSt/PMMA blend that is homogeneous in the range of several nanometers. Due to the unusual compatibilization, the thermal properties of the polymer blend are remarkably improved compared with the conventional solvent-cast blend. This method is also applicable to the compatibilization of PSt and polyacrylonitrile, which have very different solubility parameters.
机译:为促进基础科学和材料技术的发展,迫切需要建立混合不混溶物质的方法。在这里,我们描述了一种新的协议,用于使用多孔配位聚合物(PCP)作为可移动模板在分子水平上相容聚合物的相容性。在此过程中,典型的聚苯乙烯(PSt)和聚甲基丙烯酸甲酯(PMMA)的不混溶聚合物对是通过在PCP中将它们的单体连续均聚以将聚合物分布在PCP颗粒内而制备的。随后将PCP骨架溶解在螯合剂溶液中,得到的PSt / PMMA共混物在几纳米范围内是均匀的。由于不寻常的相容性,与常规的溶剂浇铸共混物相比,聚合物共混物的热性能得到显着改善。该方法也适用于溶解度参数非常不同的PSt和聚丙烯腈的增容。

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