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Molecular Characterization of Statistical Copolymer: 1. Potential and Limitations of Full Adsorption-Desorption Procedure in Separation of Statistical Copolymers

机译:统计共聚物的分子表征:1.统计共聚物分离中完全吸附-解吸程序的潜力和局限性

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Dynamic integral desorption isotherms for a series of poly(methyl methacrylate) homopolymers and poly(methyl methacrylate)-polystyrene statistical copolymers were measured. Nonporous silica was the full adsorption-desorption (FAD) column packing and various adsorption-promoting and desorption-promoting liquids were used. The aim of this study was to evaluate the applicability of the FAD approach for separation of statistical copolymers. The effects of the adsorbing liquid and desorbing liquid nature were demonstrated on the positions and shapes of desorption isotherms. The desorption isotherms also strongly depended on both(co)polymer molar mass and copolymer chemical composition. This indicates large fractionation potential of the FAD procedure. Simultaneously, the interference of both above parameters prevents the direct use of FAD for fractionation of the copolymers. It is anticipated that the fractionation and/or reconcentration potential of the FAD procedure can be very effectively utilized in combination of FAD with size-exclusion chromatography and/or with gradient elution liquid adsorption chromatography.
机译:测量了一系列聚(甲基丙烯酸甲酯)均聚物和聚(甲基丙烯酸甲酯)-聚苯乙烯统计共聚物的动态积分解吸等温线。无孔硅胶为全吸附-解吸(FAD)柱填料,并使用了各种吸附促进和解吸液体。这项研究的目的是评估FAD方法用于统计共聚物分离的适用性。证明了吸附液和解吸液性质对解吸等温线的位置和形状的影响。解吸等温线还强烈取决于(共)聚合物摩尔质量和共聚物化学组成。这表明FAD程序具有很大的分馏潜力。同时,上述两个参数的干扰阻止了将FAD直接用于共聚物的分馏。可以预料,FAD程序的分馏和/或再浓缩潜力可以非常有效地与FAD与体积排阻色谱法和/或梯度洗脱液相吸附色谱法结合使用。

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