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不同疏水性的低流动阻力甲基丙烯酸酯基整体固定相的制备及其在高流速和高温下对烷基苯的快速反相液相色谱分离中的应用。

Preparation of low flow-resistant methacrylate-based monolithic stationary phases of different hydrophobicity and the application to rapid reversed-phase liquid chromatographic separation of alkylbenzenes at high flow rate and elevated temperature.

作者信息

Ueki Yuji, Umemura Tomonari, Iwashita Yoshikazu, Odake Tamao, Haraguchi Hiroki, Tsunoda Kin-ichi

机构信息

Department of Chemistry, Faculty of Engineering, Gunma University, Kiryu, Gunma 376-8515, Japan.

出版信息

J Chromatogr A. 2006 Feb 17;1106(1-2):106-11. doi: 10.1016/j.chroma.2005.08.041. Epub 2005 Sep 12.

Abstract

Low flow-resistant alkyl methacrylate-based monolithic stationary phases of different hydrophobicity were constructed for reversed-phase capillary liquid chromatography by thermally initiated radical polymerization of respective methacrylate ester monomer with different alkyl chain (C2, C4, C6, C12, C18) and ethylene glycol dimethacrylate (EDMA) in a 250 microm i.d. fused silica capillary. The hydrophobicity was basically controlled by changing the length and/or the density of the alkyl-chain, while the composition and the ratio of porogenic solvent were adjusted to obtain highly permeable rigid monoliths with adequate column efficiency. Among the prepared monolithic stationary phases, C18-methacrylate monoliths polymerized from a binary porogenic solvent of isoamyl alcohol and 1,4-buthandiol exhibited the most promising performance in terms of hydraulic resistance and column efficiency. The pressure drops of 20-cm long monolithic columns were below approximately 0.4 MPa at a normal linear velocity of 1mm/s (a flow rate of 3 microL/min), and the numbers of theoretical plates for alkylbenzenes mostly exceeded 3000 plates/20 cm. The produced monolithic columns had good mechanical strength for high pressure and temperature, and could be properly operated even at a temperature of 80 degrees C and at a pressure of at least 33 MPa. At 80 degrees C, the theoretical plate numbers reached 6000 plates/20 cm because of the enhanced mass transfer. Due to the novel hydraulic resistance and mechanical strength, the separation time could be reduced 120-fold simply by raising the flow rate and column temperature.

摘要

通过在250微米内径的熔融石英毛细管中,使具有不同烷基链(C2、C4、C6、C12、C18)的各自甲基丙烯酸酯单体与乙二醇二甲基丙烯酸酯(EDMA)进行热引发自由基聚合,构建了用于反相毛细管液相色谱的具有不同疏水性的低流动阻力甲基丙烯酸酯基整体固定相。疏水性基本上通过改变烷基链的长度和/或密度来控制,同时调节致孔溶剂的组成和比例,以获得具有足够柱效的高渗透性刚性整体柱。在所制备的整体固定相中,由异戊醇和1,4 -丁二醇的二元致孔溶剂聚合而成的C18 -甲基丙烯酸酯整体柱在水力阻力和柱效方面表现出最有前景的性能。20厘米长的整体柱在1毫米/秒的正常线速度(3微升/分钟的流速)下,压降低于约0.4兆帕,烷基苯的理论塔板数大多超过3000塔板/20厘米。所制备的整体柱具有良好的高压和高温机械强度,甚至在80℃的温度和至少33兆帕的压力下也能正常运行。在80℃时,由于传质增强,理论塔板数达到6000塔板/20厘米。由于其新颖的水力阻力和机械强度,仅通过提高流速和柱温,分离时间可缩短120倍。

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