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Demonstration of an integrated capillary electrophoresis-laser-induced fluorescence fiber-optic sensor

机译:集成毛细管电泳-激光诱导的荧光光纤传感器的演示

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摘要

A unique integrated separation-based fiber-optic sensor for remote analysis, that incorporates capillary electrophoresis (CE) directly at the fiber sensing terminus is described for the first time. Based on laser-induced fluorescence detection, the sensor offers ths potential for high sensitivity. Although the broad-band nature of fluorescence spectra limits selectivity, the high separation power of CE provides a unique dimension of selectivity, while permitting a design of diminutive size. Previously reported fluorescence-based sensors that utilize a chemical reagent phase to impart selectivity tend to be inflexible (not readily adaptable to the detection of different species) and "one-measurement-only" sensors. Conversely, the CE-based fiber-opticsensor described here is both versatile and reusable. The analysis speed and the potential for remote control are further attributes which make the system amenable to remote sensing. A "single-fiber" optical detection arrangement and a "single-reservoir" CE system with the fiber-optic probing the outlet of the separation capillary are employed. A preliminary evaluation of the separation characteristics of this CE-based sensor is presented. Highlights include an observed separation efficiency of up to 3000 theoretical plates (8 cm separation capillary) and migration time reproducibility of less than 10% for frontal mode CE separations. The potential utility of the sensor for remote analysis is demonstrated with separations involving the CE analysis ofcharged fluorescent dyes, CE analysis of metal complexes based on in situ complexation and micellar electrokinetic capillary chromatographic analysis of neutral fluorescent compounds.
机译:首次描述了一种独特的基于集成的,基于分离的光纤传感器,用于远程分析,该传感器直接在光纤传感终端处结合了毛细管电泳(CE)。基于激光诱导的荧光检测,该传感器具有高灵敏度的潜力。尽管荧光光谱的宽带性质限制了选择性,但CE的高分离能力提供了独特的选择性,同时还允许设计小尺寸的样品。先前报道的利用化学试剂相赋予选择性的基于荧光的传感器趋于不灵活(不容易适应于不同物种的检测)和“仅一次测量”传感器。相反,此处描述的基于CE的光纤传感器既通用又可重复使用。分析速度和远程控制的潜力是使系统适合遥感的其他属性。采用“单纤维”光学检测装置和“单储层” CE系统,其中光纤探测分离毛细管的出口。初步评估了这种基于CE的传感器的分离特性。重点包括观察到的高达3000个理论塔板(8 cm分离毛细管)的分离效率,以及对于正面模式CE分离的迁移时间重现性低于10%。该传感器用于远程分析的潜在实用性已通过以下分离得到了证明:涉及带电荧光染料的CE分析,基于原位络合的金属络合物的CE分析以及中性荧光化合物的胶束电动毛细管色谱分析。

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