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Properties of a Non-Aromatic Epoxy Polymer-Based Monolithic Capillary Column for mu-HPLC

机译:用于mu-HPLC的非芳族环氧聚合物整体毛细管柱的性能

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We report the chromatographic properties of a new type of epoxy polymer-based monolithic capillary column, the Tetrad-C column. The column was prepared by a completely new method-reaction of a tetra-functional epoxy monomer, 1,3-bis(N,N-diglycidylaminomethyl)cyclohexane (trade name Tetrad-C), with a diamine, 4-[(4-aminocyclohexyl)methyl)cyclohexane (BACM). This polymer monolith has no aromatic functional groups reducing chromatographic performance. The columns were carefully observed by scanning electron microscopy and evaluated chromatographically by use of a mu-HPLC system. It was found that morphological control of the epoxy polymer-based monolith was possible simply by changing the polymerization conditions, i.e., the polymerization temperature and/or the relative amounts of porogenic solvent and BACM. Another advantage was that volumetric shrinkage of the tetra-functional epoxy-based monolith during the polymerization reaction was much less than for the tri-functional epoxy-based monolithic (TEPIC) column reported in our previous paper. A Tetrad-C column 200 mm long afforded up to 10,000 plates for alkylbenzenes in reversed-phase-mode. This column can also work in HILIC mode, although the hydrophobicity of the column was greater than that of the TEPIC column. Heat treatment (160 A degrees C for 2 h; to eliminate residual, unreacted, functional groups) had a negligible effect on column performance, indicating the columns were thermally stable.
机译:我们报告了一种新型的基于环氧聚合物的整体式毛细管色谱柱Tetrad-C的色谱性能。该色谱柱是通过全新的方法制备的,该方法是将四官能环氧单体1,3-双(N,N-二缩水甘油基氨基甲基)环己烷(商品名Tetrad-C)与二胺4-[(4-氨基环己基)甲基)环己烷(BACM)。该聚合物整料不具有降低色谱性能的芳族官能团。通过扫描电子显微镜仔细观察该柱,并通过使用mu-HPLC系统进行色谱评估。发现通过改变聚合条件,即聚合温度和/或成孔溶剂和BACM的相对量,可以简单地控制基于环氧聚合物的整料的形态。另一个优点是,在聚合反应过程中,四官能环氧基整体填料的体积收缩率远小于我们先前论文中报道的三官能环氧基整体填料(TEPIC)色谱柱的体积收缩率。 200 mm长的Tetrad-C色谱柱以反相模式提供多达10,000个烷基苯板。尽管该色谱柱的疏水性大于TEPIC色谱柱的疏水性,但该色谱柱也可以在HILIC模式下工作。热处理(160°C的温度2 h;消除残留的未反应的官能团)对色谱柱性能的影响可忽略不计,表明色谱柱是热稳定的。

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