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High Efficiency Hydrodynamic Chromatography in Micro- and Sub-micrometer Deep Channels using an On-Chip Pressure-Generation Unit

机译:使用片上压力发生单元在微米和亚微米深通道中进行高效水力色谱分析

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摘要

In this article, we report the development of a microchip based hydrodynamic chromatographic device that has an integrated pressure-generation unit to drive the mobile phase during the separation process. The pressure-gradient in this system was realized through introduction of a mismatch in electroosmotic flow rate at the junction of two glass channel segments with different depths as has been previously reported by our research group. A fraction of the resulting pressure-driven flow was then guided into an analysis channel to enable the size-based particle separations. The reported device allowed the realization of hydrodynamic chromatography in both micro- and sub-micrometer deep analysis channels as experiments showed the noted approach to yield pressure-driven velocities in our system that were nearly unaffected upon scaling down the depth of the entire fluidic network. Separations with plate numbers in the range of 500–2000 plates/mm were realized in a 3 cm long analysis column for a mixture of 25, 100 and 250 nm diameter polystyrene beads with analysis times as short as 12 s. The noted separation efficiency exceeds those previously reported in the literature for hydrodynamic chromatographic analysis performed on microchips likely due to a faster mass transfer across the channel cross-section as well as narrower band injections in our assays.
机译:在本文中,我们报告了基于微芯片的水力色谱设备的开发,该设备具有集成的压力发生单元,可在分离过程中驱动流动相。该系统中的压力梯度是通过在两个具有不同深度的玻璃通道段的交界处引入电渗流量的失配来实现的,正如我们的研究小组先前所报道的那样。然后将一部分压力驱动流引导至分析通道,以实现基于尺寸的颗粒分离。由于实验表明在系统中产生压力驱动速度的著名方法几乎不影响按比例缩小整个流体网络的深度,因此报告的装置允许在微米和亚微米深度分析通道中实现流体动力学色谱分析。在3 cm长的分析柱中,对直径为25、100和250 nm的聚苯乙烯珠的混合物进行了分离,板数在500-2000板/ mm范围内,分析时间短至12 s。提到的分离效率超过了以前在文献上针对微芯片进行水力色谱分析所报告的分离效率,这可能是由于在我们的测定中跨通道横截面的质量转移更快以及进样带较窄。

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