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Performance Evaluation of Different Design Alternatives for Microfabricated Nonporous Fused Silica Pillar Columns for Capillary Electrochromatography

机译:毛细管电色谱法超细无孔熔融硅胶柱色谱柱不同设计方案的性能评估

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摘要

An experimental study comparing the performance of different designs for microfabricated column structures for microchip capillary electrochromatography is presented. The work is a follow-up to our previously published modeling and simulation study on the same topic. Experiments were performed using fused silica microchips with and without octadecyltrimethoxysilane coating for nonretained and retained modes of operation, respectively. Showing the same trends as the modeling results, the foil shape produces a significant decrease in plate height with an increase of around 15% in mobile phase velocity in nonretained measurements of Coumarin 480 (C480). Measured plate heights at 1 kV/cm applied electric field were 0.77, 1.33, and 1.42 μm for foil, diamond, and hexagon, respectively. Chromatographic runs of C480 yielded minimal plate height values of 1.85 and 3.28 μm for foil and diamond, respectively. The optimization of the shape and placement of the structures appeared to have a considerable impact on the achievable performance.
机译:进行了一项实验研究,比较了不同设计的微芯片毛细管电色谱微柱结构的性能。这项工作是我们先前发布的有关同一主题的建模和仿真研究的后续工作。使用具有和不具有十八烷基三甲氧基硅烷涂层的熔融二氧化硅微芯片分别进行了非保留和保留操作模式的实验。显示出与建模结果相同的趋势,箔的形状使板高显着降低,在未保留的香豆素480(C480)测量中,流动相速度提高了约15%。对于箔,金刚石和六边形,在1 kV / cm的施加电场下测得的板高分别为0.77、1.33和1.42μm。 C480的色谱分析表明,箔和钻石的最小板高分别为1.85和3.28μm。结构的形状和位置的优化似乎对可达到的性能有相当大的影响。

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