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Geometric effects of collocated monolithic support structures on separation performance in microfabricated systems

机译:并置的整体支撑结构对微细加工系统分离性能的几何影响

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摘要

Twenty microfabricated COMOSS columns with varying dimensions were investigated in this work. Columns with different channel depth (1,6-10 μm) and width (2-4μm) were studied; the size of collocated particles was also varied, including diamonds (5 * 5 - 11 * 11 μm) and their elongated and extended versions; hexagonal structures allowing greater distances between mixing nodes. Comparisons were made by plotting plate height-voltage curves for each type of column geometry using rhodamine 110, fluorescein, or small peptides as standard compound. It was demonstrated that the efficiency of separation strongly depends on the geometry of resulting channels. An increases of distance between channel intersections (or decrease of trains-channel coupling frequency) was shown to unavoidably lead to a considerable decrease in efficiency of the microfabricated column. It was also found that low aspect ratio structures produced from positive photoresist masters were more efficient than their high aspect ratio equivalents. The highest efficiency of 620000 plates per meter was obtained with 10 μm deep channels sand particles of 5.2 * 5.2 μm (diamonds).
机译:在这项工作中,研究了20个尺寸各异的超细COMOSS色谱柱。研究了具有不同通道深度(1.6-10μm)和宽度(2-4μm)的色谱柱;并置颗粒的大小也有所变化,包括菱形(5 * 5-11 * 11μm)及其细长和延伸形式;六角形结构允许混合节点之间的距离更大。使用罗丹明110,荧光素或小肽作为标准化合物,通过绘制每种色谱柱几何形状的板高-电压曲线进行比较。结果表明,分离效率很大程度上取决于所得通道的几何形状。通道交叉点之间距离的增加(或列车-通道耦合频率的降低)被证明不可避免地导致了微型立柱效率的显着降低。还发现由正性光刻胶原版生产的低纵横比结构比其高纵横比等效物更有效。使用5.2 * 5.2μm(金刚石)的1​​0μm深通道砂粒可获得每米620000板的最高效率。

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