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Multichannel separation device with parallel electrochemical detection

机译:具有平行电化学检测的多通道分离装置

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摘要

A device with four parallel channels was designed and manufactured by 3D printing in titanium. A simple experimental setup allowed splitting of the mobile phase in four parallel streams, such that a single sample could be analysed four times simultaneously. The four capillary channels were filled with a monolithic stationary phase, prepared using a zwitterionic functional monomer in combination with various dimethacrylate cross-linkers. The resulting stationary phases were applicable in both reversed-phase and hydrophilic-interaction retention mechanisms. The mobile-phase composition was optimized by means of a window diagram so as to obtain the highest possible resolution of dopamine precursors and metabolites on all columns. Miniaturized electrochemical detectors with carbon fibres as working electrodes and silver micro-wires as reference electrodes were integrated in the device at the end of each column. Experimental separations were successfully compared with those predicted by a three-parameter retention model. Finally, dopamine was determined in human urine to further confirm applicability of the developed device. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过钛的3D打印设计和制造具有四个平行通道的装置。一个简单的实验设置允许在四个平行流中分离移动相,使得可以同时分析单个样本。四个毛细管通道用单片固定相填充,使用两性离子官能单体制备,与各种二甲基丙烯酸酯交联剂组合。所得到的固定相适用于反相和亲水 - 相互作用保留机制。通过窗口图优化移动相组合物,以便在所有柱上获得多巴胺前体和代谢物的最高可能分辨率。具有碳纤维作为工作电极和银微线的小型化电化学检测器作为参考电极在每塔末端的装置中集成在装置中。将实验分离与三参数保留模型预测的那些相比成功。最后,在人尿中测定多巴胺,以进一步证实开发装置的适用性。 (c)2019 Elsevier B.v.保留所有权利。

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