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Surface-selective photo-grafting on porous polymer membranes via a synergist immobilization method

机译:通过增效剂固定化方法在多孔聚合物膜上进行表面选择性光接枝

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摘要

A novel synergist immobilization photo-graft polymerization method has been developed to functionalize polymer materials in polar organic solutions. This two-step method, based on the immobilization of tertiary amine groups as synergists for the photoinitiator benzophenone (BP), had been evaluated for commercial hydrophilized polypropylene (PP) microfiltration membranes. It was shown that the hydrophilization of the PP membrane was due to a thin layer of a polyacrylate, and reaction conditions for the introduction of tertiary amino groups via an aminolysis reaction with N,N-diethylethylenediamine had been optimized. Compared with the original membrane, aminolysed membranes demonstrated high surface-selectivity for photo-grafting of polyacrylamide from methanol solution. Grafting density and polymer chain length can be well controlled by adjusting the main functionalization parameters (synergist surface concentration, BP concentration, UV irradiation time and monomer concentration). The mechanism had been analysed based on the effects of the main functionalization parameters mentioned above. The membrane pore structure was verified to be well maintained based on SEM analyses, the pore size distribution and water permeability of the membranes. The primary functionalization via aminolysis should be applicable to all polymers with ester groups on their surfaces. Via the synergist immobilization method numerous monomers which are soluble in organic solvents can be effectively grafted onto polymer surfaces for various tailored functionalizations.
机译:已经开发了一种新颖的增效剂固定化光接枝聚合方法以官能化极性有机溶液中的聚合物材料。该两步法基于叔胺基团作为光引发剂二苯甲酮(BP)的增效剂的固定化,已针对商用亲水化聚丙烯(PP)微滤膜进行了评估。已表明PP膜的亲水化是由于聚丙烯酸酯的薄层,并且已经优化了用于通过与N,N-二乙基乙二胺的氨解反应引入叔氨基的反应条件。与原始膜相比,氨解膜对聚丙烯酰胺从甲醇溶液中光接枝具有较高的表面选择性。可以通过调节主要的官能化参数(增效剂表面浓度,BP浓度,UV照射时间和单体浓度)很好地控制接枝密度和聚合物链长。基于上述主要功能参数的影响,对该机制进行了分析。基于SEM分析,膜的孔径分布和透水性,证实膜的孔结构保持良好。通过氨解作用的主要官能化应适用于所有表面带有酯基的聚合物。通过增效剂固定化方法,可将许多可溶于有机溶剂的单体有效地接枝到聚合物表面上,以进行各种定制的官能化。

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