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首页> 外文期刊>CHROMATOGRAPHY >Confirmation of Separation Mechanism Through Visualization of Microfluidic Behavior of Fluorescent Analytes in Tube Radial Distribution Chromatography
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Confirmation of Separation Mechanism Through Visualization of Microfluidic Behavior of Fluorescent Analytes in Tube Radial Distribution Chromatography

机译:通过管径分布色谱中荧光分析物的微流体行为可视化确定分离机理

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摘要

A method of tube radial distribution chromatography (TRDC) based on an annual flow with inner and outer phases created through phase transformation in an open-tubular capillary was developed. The outer phase works as a pseudo-stationary phase under laminar flow conditions in TRDC. Two model fluorescent analytes, hydrophobic perylene and hydrophilic Eosin Y, were separated by TRDC using a water/acetonitrile/ethyl acetate mixed solution (3:8:4 volume ratio, organic solvent-rich or 4:3:1 volume ratio, water-rich) as an eluent solution and a fused-silica capillary tube (75 μm inner diameter and 120 cm length/100 cm effective length) as a separation column. We observed for the first time microfluidic behavior of fluorescent analytes that distributed and separated in the capillary tube visually by fluorescence microscope-charge coupled device camera. The separation mechanism in the TRDC was confirmed with visual fluorescence data and the obtained chromatographic data with UV detection. Furthermore, the elution times of perylene and Eosin Y were calculated based on their retention factors for the two phases and laminar flow conditions. The data and results obtained support the proposed separation mechanism in TRDC.
机译:开发了一种基于年流量的管径分布色谱法(TRDC),该年流量通过在开管毛细管中进行相变而产生内外相。外层相在TRDC中的层流条件下充当伪平稳相。使用水/乙腈/乙酸乙酯混合溶液(体积比为3:8:4,富含有机溶剂或体积比为4:3:1,水-浓缩液作为洗脱液,熔融石英毛细管(内径75μm,长度120 cm长/ 100 cm有效长度)作为分离柱。我们首次观察到了荧光分析物的微流体行为,该荧光分析物通过荧光显微镜-电荷耦合器件照相机在毛细管中可视地分布和分离。可见荧光数据证实了TRDC中的分离机理,而紫外检测证实了所获得的色谱数据。此外,per和曙红Y的洗脱时间是根据它们在两相中的保留因子和层流条件计算的。获得的数据和结果支持TRDC中建议的分离机制。

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