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一种基于微流控芯片的顺序注射系统,具有捕获液滴液液萃取和化学发光检测功能。

A microfluidic chip based sequential injection system with trapped droplet liquid-liquid extraction and chemiluminescence detection.

作者信息

Shen Hong, Fang Qun, Fang Zhao-Lun

机构信息

Chemistry Department, Zhejiang University (Xixi Campus), 310028, Hangzhou, China.

出版信息

Lab Chip. 2006 Oct;6(10):1387-9. doi: 10.1039/b605332g. Epub 2006 Jul 31.

Abstract

A microfluidic chip-based sequential injection system with trapped droplet liquid-liquid extraction preconcentration and chemiluminescence detection was developed for achieving high sensitivity with low reagent and sample consumption. The microfabricated glass lab-chip had a 35 mm long extraction channel, with 134 shrunken opening rectangular recesses (L 100 microm x W 50 microm x D 25 microm) arrayed within a 1 mm length on both sides of the middle section of the channel. Ketonic peroxyoxalate ester solution was filled in the recesses forming organic droplets, and keeping the aqueous sample solution flowing continuously in the extraction channel; analytes were transferred from the aqueous phase into the droplets through molecular diffusion. After liquid-liquid extraction preconcentration, catalyst and hydrogen peroxide solutions were introduced into the channel, and mixed with analytes and peroxyoxalate ester to emit chemiluminescence light. The performance of the system was tested using butyl rhodamine B, yielding a precision of 4% RSD (n = 5) and a detection limit of 10(-9) M. Within a 17 min analytical cycle, the consumptions of sample and peroxyoxalate solutions were 2.7 microL and 160 nL, respectively.

摘要

开发了一种基于微流控芯片的顺序注射系统,该系统具有捕获液滴液-液萃取预浓缩和化学发光检测功能,以实现低试剂和样品消耗下的高灵敏度。微加工玻璃实验芯片有一个35毫米长的萃取通道,在通道中间部分两侧1毫米长度范围内排列着134个收缩开口的矩形凹槽(长100微米×宽50微米×深25微米)。酮过氧草酸酯溶液填充在凹槽中形成有机液滴,同时使水样溶液在萃取通道中持续流动;分析物通过分子扩散从水相转移到液滴中。经过液-液萃取预浓缩后,将催化剂和过氧化氢溶液引入通道,与分析物和过氧草酸酯混合以发出化学发光。使用丁基罗丹明B对该系统的性能进行了测试,相对标准偏差为4%(n = 5),检测限为10(-9) M。在17分钟的分析周期内,样品和过氧草酸溶液的消耗量分别为2.7微升和160纳升。

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