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Automated system to acquire fluorescence polarization and anisotropy maps within liquid flows

机译:自动化系统可获取液体流中的荧光偏振和各向异性图

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摘要

Maps of polarization and anisotropy can be helpful for flow analysis systems (FIA, CFA, etc.) with reactions dependent on the intermolecular alignment as well as for dispersion control. Maps can be acquired manually, but when a scan over a sample area is required, the acquisition becomes tiresome and has low precision. The paper describes an automatic flexible system for high-precision sample positioning with closed loop self control, remote data acquisition and storage controlled by a BASIC program. The system was developed to acquire maps up to 850 mm2 of the sample (liquid flows, solids, interfaces, etc.), with up to 100 μm2 precision. To evaluate the equipment, performance is presented as the scan of a thin liquid film of monoethylene glycol (MEG) flowing on borosilicate. Tests were performed with and without surfactantes at submicellar concentrations: two concentrations of sodium dodecyl sulphate (SDS) and one of polyethylene oxide (PEO). For pure MEG, the intermolecular alignment initially increased, then decreased. When SDS was added, both polarization and anisotropy only increased progressively with the flow. This might be explained by the surfactant decrease of interfacial interaction. When PEO was added, both polarization and anisotropy decreased pronouncedly over the entire map, which might be due to macromolecular aggregates within the bulk generating misaligned molecular domains. The system presented as sample positioning repeatability of 0.1% and a high polarization reproducibility (error margin < 6 in 1000).
机译:极化和各向异性图对于流分析系统(FIA,CFA等)的反应取决于分子间排列以及分散控制可能会有所帮助。可以手动获取地图,但是当需要在样本区域进行扫描时,获取会变得很烦人并且精度较低。本文介绍了一种自动柔性系统,该系统可通过闭环自我控制,BASIC程序控制的远程数据采集和存储来进行高精度的样品定位。该系统的开发目的是采集高达850 mm 2 的样品图(液体流量,固体,界面等),精度高达100μm 2 。为了评估设备,性能表现为扫描在硼硅酸盐上流动的单乙二醇(MEG)液体薄膜的情况。在有和没有表面活性剂的情况下进行了测试,测试浓度分别为以下浓度:两种浓度的十二烷基硫酸钠(SDS)和一种浓度的聚环氧乙烷(PEO)。对于纯MEG,分子间排列开始先增加,然后减少。当添加SDS时,极化和各向异性都仅随着流动而逐渐增加。这可能是由于表面活性剂界面相互作用的降低。当添加PEO时,极化和各向异性在整个图谱上均显着降低,这可能是由于主体内的大分子聚集体产生了未对准的分子结构域。该系统的样品定位重复性为0.1%,偏振再现性高(误差范围<6 in 1000)。

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