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Controlled ultraviolet (UV) photoinitiated fabrication of monolithic porous layer open tubular (monoPLOT) capillary columns for chromatographic applications

机译:用于色谱应用的整体多孔层开管(monopLOT)毛细管柱的受控紫外(UV)光引发制造

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摘要

An automated column fabrication technique that is based on a ultraviolet (UV) light-emitting diode (LED) array oven, and provides precisely controlled "in-capillary" ultraviolet (UV) initiated polymerization at 365 nm, is presented for the production of open tubular monolithic porous polymer layer capillary (monoPLOT) columns of varying length, inner diameter (ID), and porous layer thickness. The developed approach allows the preparation of columns of varying length, because of an automated capillary delivery approach, with precisely controlled and uniform layer thickness and monolith morphology, from controlled UV power and exposure time. The relationships between direct exposure times, intensity, and layer thickness were determined, as were the effects of capillary delivery rate (indirect exposure rate), and multiple exposures on the layer thickness and axial distribution. Layer thickness measurements were taken by scanning electron microscopy (SEM), with the longitudinal homogeneity of the stationary phase confirmed using scanning capacitively coupled contactless conductivity detection (sC(4)D). The new automated UV polymerization technique presented in this work allows the fabrication of monoPLOT columns with a very high column-to-column production reproducibility, displaying a longitudinal phase thickness variation within ±0.8% RSD (relative standard deviation).
机译:提出了一种基于紫外(UV)发光二极管(LED)阵列烘箱的自动色谱柱制造技术,该技术可在开放式生产中提供精确控制的“毛细管内”紫外(UV)引发的365 nm聚合。长度,内径(ID)和多孔层厚度不同的管状整体多孔聚合物层毛细管(monoPLOT)色谱柱。由于采用了自动毛细管输送方法,可通过控制的UV功率和曝光时间精确控制和均匀地控制层厚度和整料形态,因此开发的方法可以制备不同长度的色谱柱。确定直接曝光时间,强度和层厚度之间的关系,以及毛细管传输速率(间接曝光率)以及多次曝光对层厚度和轴向分布的影响。层厚度的测量是通过扫描电子显微镜(SEM)进行的,固定相的纵向均匀性使用扫描电容耦合非接触电导检测(sC(4)D)进行了确认。这项工作中介绍的新的自动UV聚合技术使MonoPLOT色谱柱的制造具有很高的柱间生产重现性,显示的纵向相厚度变化在RSD(相对标准偏差)的±0.8%之内。

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