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Preparation and evaluation of surface-grafted block copolymers and random copolymers via surface-initiated atom transfer radical polymerization for hydrophilic/ion-exchange stationary phases

机译:通过表面引发的原子转移自由基聚合进行亲水/离子交换固定相的表面接枝嵌段共聚物和无规共聚物的制备和评价

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Mixed-mode chromatographic (MMC) stationary phases must be functionalized with at least two functional groups to yield multiple interactions. The present study proposed a novel approach of grafting copolymers with monomers with different properties via surface initiated-atom transfer radical polymerization (SI-ATRP) for the development of MMC stationary phases. In the synthesis, block copolymers and random copolymers containing sodium 4-styrenesulfonate (NASS) and dimethylaminoethyl methacrylate (DMAEMA) units were controllably grafted onto a silica surface via SI-ATRP for the preparation of hydrophilic/ion-exchange stationary phases. Upon investigation of their retention behaviors under different chromatographic conditions (i.e. water content, salt concentration and pH in mobile phase, column temperature) compared to a typical diol column, both the block and random copolymer stationary phases presented mixed-mode retention mechanisms involving hydrophilic and ion-exchange interactions. Furthermore, various solutes, such as basic β-agonists, strong polar nucleosides, organic acids, and a real sample of safflower injection, were employed to evaluate the separation selectivities of the stationary phases; similar selectivities and good separation efficiencies were achieved on the two copolymer columns. In conclusion, the method of surface-grafted copolymers via SI-ATRP possesses potential for further applications in the development of various MMC stationary phases.
机译:混合模式色谱(MMC)固定相必须使用至少两个官能团进行官能化,以产生多种相互作用。本研究提出了一种通过表面引发原子转移自由基聚合(SI-ATRP)将具有不同性质的单体接枝共聚物的新方法,用于开发MMC固定相。在合成过程中,通过SI-ATRP将含有4-苯乙烯磺酸钠(NASS)和甲基丙烯酸二甲基氨基乙基酯(DMAEMA)单元的嵌段共聚物和无规共聚物可控地接枝到二氧化硅表面,以制备亲水/离子-交换固定相。与典型的二醇色谱柱相比,在不同色谱条件下(水含量,盐浓度和pH在流动相中,色谱柱温度)下对它们的保留行为进行了研究,嵌段和无规共聚物固定相均呈混合状态-模式保留机制涉及亲水和离子交换相互作用。此外,还使用了各种溶质,如碱性β-激动剂,强极性核苷,有机酸和红花注射液的真实样品,来评估固定相的分离选择性。在两个共聚物塔上实现了相似的选择性和良好的分离效率。总之,通过SI-ATRP的表面接枝共聚物的方法在各种MMC固定相的开发中具有进一步应用的潜力。

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