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Evaluation of 5 µm Superficially Porous Particles for Capillary and Microfluidic LC Columns

机译:毛细管和微流LC色谱柱的5 µm表面多孔颗粒的评估

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摘要

Large-size (4–5 µm) superficially porous particles yield lower plate heights (e.g., the minimal reduced plate height or hmin ≈ 1.5) than fully porous particles of a similar size when packed into large-bore columns. This property allows for better chromatographic performance without the higher pressures required for smaller particles. This study explores the use of such particles in microfluidic LC columns where materials and fitting pressure limits can constrain the size of particle used. The theoretically predicted performance improvements compared to fully porous particles were not demonstrated in capillary columns (with hmin ≈ 2 for both particle types), in agreement with previous studies that examined smaller superficially porous particles. Microfluidic columns were then compared to capillary columns. Capillary columns significantly outperformed microfluidic columns due to imperfections imposed by microfluidic channel asymmetry and world-to-chip connection at the optimal flow rate; however, superficially porous particles packed in microfluidic LC columns had flatter plate height versus flow rate curves indicating potential for better performance at high reduced velocities.
机译:当将大尺寸(4–5 µm)表面多孔颗粒填充到大口径色谱柱中时,其板高(例如最小的降低的板高或hmin≈1.5)要比具有类似尺寸的全多孔颗粒的板高低。该特性可实现更好的色谱性能,而无需使用较小颗粒所需的更高压力。这项研究探索了在微流体LC色谱柱中此类颗粒的使用,在这些色谱柱中,材料和合适的压力限制会限制所用颗粒的大小。与完全多孔颗粒相比,理论上预测的性能改进未在毛细管柱中得到证实(两种颗粒类型的hmin≈2),这与先前研究较小的表面多孔颗粒的研究一致。然后将微流体柱与毛细管柱进行比较。由于在最佳流速下微流体通道的不对称性和芯片间的连接,毛细管柱的性能明显优于微流体柱;但是,填充在微流LC色谱柱中的表面多孔颗粒的平板高度与流速曲线较平坦,表明在高降低的速度下具有更好性能的潜力。

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