首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Effect of monomer mixture composition on structure and chromatographic properties of poly(divinylbenzene-co-ethylvinylbenzene-co-2-hydroxyethyl methacrylate) monolithic rod columns for separation of small molecules
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Effect of monomer mixture composition on structure and chromatographic properties of poly(divinylbenzene-co-ethylvinylbenzene-co-2-hydroxyethyl methacrylate) monolithic rod columns for separation of small molecules

机译:单体混合物组成对分离小分子的聚(二乙烯基苯-乙基乙基苯-甲基丙烯酸-2-羟基乙酯)整体式棒柱结构和色谱性能的影响

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Porous poly(divinylbenzene-co-ethylvinylbenzene-co-2-hydroxyethyl methacrylate) monoliths were synthesized via thermally initiated free-radical polymerization in confines of surface-vinylized glass columns (150mm×3mm i.d.) and applied to the reversed-phase separation of low-molecular-weight aromatic compounds. In order to compensate for the polymer shrinkage during the synthesis and prevent the monolith from detachment from the column wall, polymerization was conducted under nitrogen pressure. The reaction proceeded at 60°C for 22h. 2,2'-Azo-bis-isobutironitrile was used as the initiator and 1-dodecanol was used as the porogen. A series of monoliths with different monomer ratios were obtained. All the monoliths had high specific surface areas ranging from 370 to 490m~2/g. In the studied range of monomer mixture compositions, the mechanical stability of the stationary phase in water/acetonitrile eluents was found to be high enough and practically insensitive to the fraction of 2-hydroxyethyl methacrylate (HEMA). Increasing the molar fraction of HEMA from 10.5% to 14.7% resulted in the decrease of column permeability by two orders of magnitude (from 1.1×10~(-12) to 1.8×10~(-14)m~2) and led to weaker retention of alkylbenzenes. The higher HEMA content was shown to reduce the plate height of the columns in the separation of small molecules from 160-490μm to 40-76μm. This was attributed mainly to the decrease of the domain size of the monoliths leading to lower eddy dispersion and mass transfer resistance in the column.
机译:在表面乙烯基化玻璃柱(150mm×3mm id)的范围内,通过热引发的自由基聚合反应合成了多孔聚(二乙烯基苯-乙基乙烯基苯-甲基丙烯酸2-羟乙酯)整料,并将其应用于低分子量的反相分离。 -分子量芳族化合物。为了补偿合成过程中的聚合物收缩并防止整料从柱壁上脱离,在氮气压力下进行聚合。反应在60℃下进行22小时。使用2,2'-偶氮二异丁腈作为引发剂,使用1-十二烷醇作为成孔剂。获得了具有不同单体比例的一系列整体料。所有的整料都具有高的比表面积,范围从370到490m 2 / g。在单体混合物组成的研究范围内,发现水/乙腈洗脱液中固定相的机械稳定性足够高,并且实际上对甲基丙烯酸2-羟乙酯(HEMA)的馏分不敏感。 HEMA的摩尔分数从10.5%增加到14.7%导致柱渗透率降低两个数量级(从1.1×10〜(-12)到1.8×10〜(-14)m〜2),并导致烷基苯的保留能力较弱。结果表明,较高的HEMA含量可将分离小分子的塔板高度从160-490μm减小到40-76μm。这主要归因于整体结构域尺寸的减小,从而降低了塔中的涡流分散性和传质阻力。

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