首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Improving thermal control of capillary electrophoresis with mass spectrometry and capacitively coupled contactless conductivity detection by using 3D printed cartridges
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Improving thermal control of capillary electrophoresis with mass spectrometry and capacitively coupled contactless conductivity detection by using 3D printed cartridges

机译:用质谱法改善毛细管电泳的热控制,采用3D印刷盒,电容耦合无接触式电导检测

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摘要

A 3D-printed cartridge was developed to improve the interface between a capillary electrophoresis instrument and a mass spectrometer. The thermostated airflow from the CE was guided to the entrance of the electrospray source keeping as much as possible the silica capillary in a proper Joule-heating dissipation environment. Hollow 3D-printed walls made of ABS covered by a 0.2 mm thick copper foil on the inner side were used. The cartridge also allows including up to two capacitively coupled contactless conductivity detectors (C(4)Ds). Experiments about the separation of monoethyl carbonate (a thermally unstable species) shows that the peak area obtained with the original cartridge is only 21% of the value obtained with the 3D-printed cartridge, which demonstrates the improvement in heat dissipation.
机译:开发了一种3D印刷盒以改善毛细管电泳器械和质谱仪之间的界面。 来自CE的恒温气流被引导到电喷雾源的入口,保持在适当的焦耳加热耗散环境中的二氧化硅毛细管。 使用由ABS制成的空心3D印刷墙壁覆盖在内侧的0.2mm厚的铜箔上。 盒还允许包括多达两个电容耦合的非接触式电导检测器(C(4)DS)。 关于碳酸单乙酸单乙基(一种热不稳定物种)的实验表明,用原始盒获得的峰面积仅是用3D印刷盒获得的值的21%,这表明了散热的改善。

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