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首页> 外文期刊>Reactive & Functional Polymers >Monodisperse-porous particles with different polarities by 'modified seeded polymerization' and their use as chromatographic packing in HPLC
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Monodisperse-porous particles with different polarities by 'modified seeded polymerization' and their use as chromatographic packing in HPLC

机译:通过“改良种子聚合”获得具有不同极性的单分散多孔颗粒,并将其用作HPLC中的色谱填料

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Monodisperse-porous beads with different polarities were prepared by "modified seeded polymerization". Poly(2-hydroxyethyl methacrylate-ethylene dimethacrylate), poly(HEMA-EDM), beads were the most polar structure obtained by the proposed method. A macromonomer, poly(ethylene glycol methacrylate) was first used lor the synthesis of poly(polyethylene glycol methacrylate-ethylene dimethacrylate), poly(PEGMA-EDM), beads having relatively apo-lar structure with respect to poly(HEMA-EDM). A more apolar packing material, monodisperse poly(ethylene dimethacrylate), poly(EDM), beads, was also obtained by using only the crosslinking agent (i.e. ethylene dimethacrylate) as the monomer phase in the synthesis. The average pore size of poly(HEMA-EDM) beads was reasonably higher with respect to poly(PEGMA-EDM) and poly(EDM) beads. All bead types were slurry packed into the HPLC columns and their chromatographic performances were investigated by the isocratic separation of alkylbenzenes in the reversed phase mode. The chromatographic separation was achieved with the lower acetonitrile (AcN) concentration in the columns with higher polarity. More polar columns including poly(HEMA-EDM) or poly(PEGMA-EDM) beads provided higher column efficiency with low AcN concentration. Among the materials produced, the stationary medium including poly(EDM) beads gave the highest resolution power. Although the mobile phase flow rate was increased fourfold, the resolution power could be preserved with poly(HEMA-EDM) column. The results indicated that monodisperse particle based stationary media were obtained in a reasonably wide polarity range by the proposed protocol.
机译:通过“改性种子聚合”制备具有不同极性的单分散多孔珠。聚(甲基丙烯酸2-羟乙酯-二甲基丙烯酸乙酯),聚(HEMA-EDM)珠是通过所提出的方法获得的最极性的结构。首先使用大分子单体聚(甲基丙烯酸乙二醇酯)或合成聚(聚甲基丙烯酸乙二醇酯-二甲基丙烯酸乙烯酯),聚(PEGMA-EDM),相对于聚(HEMA-EDM)具有相对异型结构的珠。还通过在合成中仅使用交联剂(即二甲基丙烯酸乙二酯)作为单体相,获得了一种非极性填充材料,即单分散性的聚二甲基丙烯酸乙二酯,聚二甲基乙二胺。相对于聚(PEGMA-EDM)和聚(EDM)珠,聚(HEMA-EDM)珠的平均孔径合理地较高。将所有类型的珠粒均填充到HPLC色谱柱中,并通过反相色谱法对烷基苯进行等度分离来研究其色谱性能。色谱柱中极性较高的乙腈(AcN)浓度较低,从而实现了色谱分离。包括聚(HEMA-EDM)或聚(PEGMA-EDM)珠在内的更多极性色谱柱可在较低的AcN浓度下提供更高的色谱柱效率。在生产的材料中,包括聚(EDM)珠的固定介质具有最高的分辨力。尽管流动相的流速增加了四倍,但使用聚(HEMA-EDM)色谱柱可以保留分离度。结果表明,所提出的方案在合理的极性范围内获得了基于单分散颗粒的固定介质。

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