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Bed morphological features associated with an optimal slurry concentration for reproducible preparation of efficient capillary ultrahigh pressure liquid chromatography columns

机译:床形态特征与最佳浆液浓度相关可重现制备高效毛细管超高压液相色谱柱

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摘要

Column wall effects and the formation of larger voids in the bed during column packing are factors limiting the achievement of highly efficient columns. Systematic variation of packing conditions, combined with three-dimensional bed reconstruction and detailed morphological analysis of column beds, provide valuable insights into the packing process. Here, we study a set of sixteen 75 µm i.d. fused-silica capillary columns packed with 1.9 µm, C18-modified, bridged-ethyl hybrid silica particles slurried in acetone to concentrations ranging from 5 to 200 mg/mL. Bed reconstructions for three of these columns (representing low, optimal, and high slurry concentrations), based on confocal laser scanning microscopy, reveal morphological features associated with the implemented slurry concentration, that lead to differences in column efficiency. At a low slurry concentration, the bed microstructure includes systematic radial heterogeneities such as particle size-segregation and local deviations from bulk packing density near the wall. These effects are suppressed (or at least reduced) with higher slurry concentrations. Concomitantly, larger voids (relative to the mean particle diameter) begin to form in the packing and increase in size and number with the slurry concentration. The most efficient columns are packed at slurry concentrations that balance these counteracting effects. Videos are taken at low and high slurry concentration to elucidate the bed formation process. At low slurry concentrations, particles arrive and settle individually, allowing for rearrangements. At high slurry concentrations, they arrive and pack as large patches (reflecting particle aggregation in the slurry). These processes are discussed with respect to column packing, chromatographic performance, and bed microstructure to help reinforce general trends previously described. Conclusions based on this comprehensive analysis guide us towards further improvement of the packing process.
机译:色谱柱壁效应以及在色谱柱填充过程中在床层中形成更大的空隙是限制高效色谱柱实现的因素。填料条件的系统变化,再加上三维床的重建和柱床的详细形态分析,为填料过程提供了宝贵的见识。在这里,我们研究一组十六个75 µm内径。填充有1.9 µm C18改性桥连乙基杂化二氧化硅颗粒的熔融石英毛细管柱,在丙酮中成浆,浓度为5至200 mg / mL。基于共聚焦激光扫描显微镜,对其中三个色谱柱(代表低,最佳和高浆料浓度)的床层重建显示了与已实现的浆料浓度相关的形态学特征,从而导致了色谱柱效率的差异。在低浆液浓度下,床层微观结构包括系统的径向异质性,例如粒度分离和壁附近堆积密度的局部偏差。这些效果在较高的浆料浓度下被抑制(或至少降低了)。随之而来的是,在填料中开始形成较大的空隙(相对于平均粒径),并随着浆料浓度的增加而增大尺寸和数量。最有效的色谱柱以平衡这些抵消作用的浆液浓度填充。在低浆液浓度和高浆液浓度下拍摄视频,以阐明床层形成过程。在低浆液浓度下,颗粒会分别到达并沉降,从而进行重排。在高浆液浓度下,它们到达并堆积成大块(反映浆液中的颗粒聚集)。讨论了有关柱填充,色谱性能和床微结构的这些过程,以帮助加强前面所述的总体趋势。基于此综合分析得出的结论将指导我们进一步改进包装工艺。

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