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Enhanced radial dispersion as a means to gain separation performance in miniaturized liquid chromatography systems

机译:增强的径向分散性,可在小型液相色谱系统中获得分离性能

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In the current contribution, it is demonstrated that radial elongation of support structures in a chromatographic column has an enormous impact on the axial band broadening occurring in the column. By increasing the lateral dimension of the support structures with respect to their axial dimension, axial band broadening could be reduced up to 5 times. For flat rectangular columns filled with 5 μm axial length support structures and a spacing of 2.5 μm, the minimal (apparent) plate height could be reduced from 2.6 to 0.5 μm under non-retained conditions by increasing the ratio of the lateral over the axial dimension from 1.2 to 15. This increase in performance can be addressed to a decrease in longitudinal dispersion, which was reflected in a reduced B-term by a factor of 25. The footprint of the column is dramatically reduced, ending up with an equivalence of 2 million plates per meter for an aspect ratio of 15. Under retained conditions, a 4 component (Coumarin) separation could be demonstrated requiring 1 mm channel length only.
机译:在当前的贡献中,证明了色谱柱中支撑结构的径向伸长对色谱柱中发生的轴向谱带扩宽具有巨大影响。通过相对于其轴向尺寸增加支撑结构的横向尺寸,轴向带展宽可以减小多达5倍。对于填充有5μm轴向长度支撑结构且间距为2.5μm的扁平矩形柱,在非保留条件下,通过增加横向尺寸与轴向尺寸之比,可以将最小(视在)板高从2.6减小至0.5μm。从1.2到15。这种性能的提高可解决纵向色散的减少,这反映在B项减少了25倍后。色谱柱的占地面积显着减少,最终等于2纵横比为15时,每米可容纳100万个板。在保留条件下,可以证明仅需要1毫米通道长度的4组分(香豆素)分离。

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