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On the Advantages of Radially Elongated Structures in Microchip-Based Liquid Chromatography

机译:基于微芯片的液相色谱中放射状伸长结构的优势

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We report on the possibility to realize submicrometer plate heights using chromatographic pillar array columns filled with radially elongated diamond-shaped pillars, even when using a relatively large interpillar distance (2.5 μm) and axial pillar width (5 μm). It is demonstrated that the use of high aspect ratio radially elongated pillars which are 15 times wider in the radial than in the axial direction can lead to a fivefold reduction of the minimal plate height compared to beds filled with pillars with a similar, interpillar distance but with an aspect ratio around unity (cylinders and diamonds). This increase in performance can be attributed to a decrease in longitudinal dispersion, reflected by a reduction of the B-term by a factor of about 25. Experiments were conducted at room temperature, as well as at elevated temperature (70℃), where the B-term band broadening is known to be more critical. The main advantage of radially elongated pillar beds is that they enable a drastic reduction of the footprint of pillar array columns, allowing design of very long channels with a minimum of turns. Under retained conditions, a four-component laser dye mixture could be separated over a distance of only 1.5 mm.
机译:我们报告了使用填充有径向细长菱形柱的色谱柱阵列柱实现亚微米板高度的可能性,即使使用相对较大的柱间距离(2.5μm)和轴向柱宽(5μm)也是如此。结果表明,使用高长宽比的径向细长立柱(径向上比轴向宽15倍)可以使最小板高比填充有相似立柱间距的立柱的床降低五倍。长宽比大约为1(圆柱和菱形)。性能的提高可归因于纵向分散的减少,这反映为B项减少了约25倍。实验是在室温以及高温(70℃)下进行的,众所周知,B端频带展宽更为关键。径向细长的柱床的主要优点在于,它们可以大大减少柱阵列柱的占地面积,从而允许设计最小转弯的长通道。在保留条件下,四组分激光染料混合物的分离距离仅为1.5 mm。

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