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首页> 外文期刊>Analytica chimica acta >Miniaturised medium pressure capillary liquid chromatography system with flexible open platform design using off-the-shelf microfluidic components
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Miniaturised medium pressure capillary liquid chromatography system with flexible open platform design using off-the-shelf microfluidic components

机译:微型中压毛细管液相色谱系统,采用现成的微流体组件,具有灵活的开放平台设计

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摘要

Trends towards portable analytical instrumentation of the last decades have not been equally reflected in developments of portable liquid chromatography (LC) instrumentation for rapid on-site measurements. A miniaturised medium pressure capillary LC (MPLC) system with gradient elution capability has been designed based on a flexible modular microfluidic system using primarily off-the-shelf low cost components to ensure wide accessibility to other analysts. The microfluidic platform was assembled on a breadboard and contained microsyringe pumps and switch valves, complemented with an injection valve and on-capillary detectors, all controlled by a PC. Four miniaturised microsyringe pumps, with 5, 20 and 100 mu L syringe volume options, formed the basis of the pumping system. Two pairs of pumps were used for each mobile phase to create gradient elution capability. The two microsyringe pumps in each pairs were linked by two electrically operated microfluidic switching valves and both pairs of pumps were connected through a zero void volume cross-connector, thus providing a low hold-up volume for gradient formation. Sample was injected by a 20 nL nano-LC sampling valve, directly connected to a 18 cm long 100 mu m i.d. Chromolith CapRod RP-18 monolithic capillary column. On-capillary LED-based UV-vis photometric detection was conducted through a piece of equal diameter fused silica capillary connected after the column. The performance of the portable LC system was evaluated theoretically and experimentally, including the maximum operating pressure, gradient mixing performance, and the performance of the detectors. The 5 mu L microsyringe pump offered the best performance, with typical maximum operating pressures up to 11.4 +/- 0.4 MPa (water) and gradient pumping repeatability of between 4 and 9% for gradients between 0.10% s(-1) and 0.33% s(-1). Test analytes of charged and uncharged dyes and pharmaceuticals of varying hydrophobicity showed typical RSD values of 0.7-1.4% and 3.3-4.8% in isocratic mode and 1.2-4.6% and 3.2-6.4% in gradient mode, respectively for retention time and peak area repeatability. Crown Copyright (C) 2015 Published by Elsevier B.V. All rights reserved.
机译:过去几十年来,便携式分析仪器的趋势并未在用于快速现场测量的便携式液相色谱(LC)仪器的发展中得到同等反映。基于灵活的模块化微流控系统,设计了具有梯度洗脱功能的小型中压毛细管液相色谱(MPLC)系统,该系统主要使用现成的低成本组件,以确保广泛供其他分析人员使用。将微流体平台组装在面包板上,并包含微注射器泵和开关阀,并辅以注射阀和毛细管检测器,所有这些均由PC控制。四个微型微型注射器泵具有5、20和100μL的注射器容积选择,构成了泵系统的基础。每个流动相使用两对泵以建立梯度洗脱能力。每对中的两个微注射器泵通过两个电动微流体切换阀连接,并且两对泵通过零空隙体积的交叉连接器连接,从而为梯度形成提供了低滞留体积。样品通过20 nL纳米LC采样阀进样,该阀直接连接到18 cm长的100μmi.d. Chromolith CapRod RP-18整体毛细管柱。毛细管上的基于LED的UV-vis光度检测是通过在色谱柱后连接的一块等直径的熔融石英毛细管进行的。从理论上和实验上评估了便携式液相色谱系统的性能,包括最大工作压力,梯度混合性能和检测器性能。 5μL的微型注射器泵提供了最佳性能,典型的最大工作压力高达11.4 +/- 0.4 MPa(水),对于梯度在0.10%s(-1)和0.33%之间的梯度泵重复性在4%和9%之间s(-1)。带电荷和不带电荷的染料以及疏水性不同的药物的测试分析物在保留时间和峰面积上的典型RSD值在等度模式下分别为0.7-1.4%和3.3-4.8%,在梯度模式下分别为1.2-4.6%和3.2-6.4%可重复性。官方版权(C)2015,Elsevier B.V.保留所有权利。

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