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首页> 外文期刊>Analytical chemistry >High-throughput nanoliter sample introduction microfluidic chip-based flow injection analysis system with gravity-driven flows
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High-throughput nanoliter sample introduction microfluidic chip-based flow injection analysis system with gravity-driven flows

机译:具有重力驱动流的高通量纳升样品引入基于微流芯片的流动注射分析系统

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摘要

In this work, a simple, robust, and automated microfluidic chip-based FIA system with gravity-driven flows and liquid-core waveguide (LCW) spectrometric detection was developed. The high-throughput sample introduction system was composed of a capillary sampling probe and an array of horizontally positioned microsample vials with a slot fabricated on the bottom of each vial. FI sample loading and injection were performed by linearly moving the array of vials filled alternately with 50-muL samples and carrier, allowing the probe inlet to enter the solutions in the vials through the slots sequentially and the sample and carrier solution to be introduced into the chip driven by gravity. The performance of the system was demonstrated using the complexation of o-phenanthroline with Fe(II) as a model reaction. A 20-mm-long Teflon AF 2400 capillary (50-mum i.d., 375-mum o.d.) was connected to the chip to function as a LCW detection flow cell with a cell volume of 40 nL and effective path length of 1.7 cm. Linear absorbance response was obtained in the range of 1.0-100 muM Fe(II) (r(2) = 0.9967), and a good reproducibility of 0.6% RSD (n = 18) was achieved. The sensitivity was comparable with that obtained using conventional FIA systems, which typically consume 10 000-fold more sample. The highest sampling throughput of 1000 h(-1) was obtained by using injection times of 0.08 and 3.4 s for sample and carrier solution, respectively, with a sample consumption of only 0.6 nL for each cycle.
机译:在这项工作中,开发了一种简单,强大且自动化的基于微流体芯片的FIA系统,该系统具有重力驱动的流动和液芯波导(LCW)光谱检测功能。高通量样品引入系统由毛细管采样探针和水平放置的微量样品瓶阵列组成,每个样品瓶底部均设有狭缝。 FI样品的加载和进样是通过线性移动交替填充50μL样品和载体的样品瓶阵列来进行的,允许探针入口依次通过狭槽进入样品瓶中的溶液,并将样品和载体溶液引入样品瓶中。芯片受重力驱动。使用邻菲咯啉与Fe(II)的络合物作为模型反应证明了该系统的性能。将一条20毫米长的Teflon AF 2400毛细管(内径50微米,外径375微米)连接到芯片上,以用作LCW检测流通池,池体积为40 nL,有效路径长度为1.7 cm。在1.0-100μMFe(II)(r(2)= 0.9967)的范围内获得线性吸光度响应,并实现了0.6%RSD(n = 18)的良好重现性。灵敏度与使用常规FIA系统获得的灵敏度相当,后者通常消耗10,000倍的样品。通过分别对样品和载体溶液使用0.08和3.4 s的进样时间,可获得1000 h(-1)的最高采样通量,每个循环的样品消耗仅为0.6 nL。

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