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压电喷墨技术生成用于电喷雾电离的皮升级别的液滴。

Generation of picoliter droplets of liquid for electrospray ionization with piezoelectric inkjet.

机构信息

Beijing Key Laboratory of Microanalytical Methods and Instrumentation, Department of Chemistry, Tsinghua University, Beijing 100084, China.

出版信息

J Mass Spectrom. 2013 Mar;48(3):321-8. doi: 10.1002/jms.3159.

DOI:10.1002/jms.3159
PMID:23494787
Abstract

We report the association of inkjet and electrospray ionization MS to detect picoliter droplet, where the liquid volume and its position onto the tip can be precisely controlled to form ultrafine droplets for successive ionization of the analyte. Single rectangle pulse was applied to piezoelectric device on inkjet microchip for the ejection of each picoliter droplet, and it was controlled by a computer. The voltage and width of driving pulse for the inkjet were optimized to make reproducible ejection of the solvent with low viscosity. The volume of each droplet was about 600 pl, and a trigger of 10 droplets was selected as the best inlet mode taking relative standard derivation of the droplets into consideration. The target substrate used with high voltage to form ionization was graphite, after several attempts with some materials. High-speed camera was used to capture the breaking-up process of a droplet. The distance between the inkjet nozzle and the tip was set at 2 cm to avoid short circuit. The influences on the mass intensity of the diameter of the tip, the volume and the concentration of the sample were examined. The tip with a small diameter performed greater intensity, and the limit of detection decreased, whereas the small volume of liquid played high ionization efficiency. Linear regression in the range between 1 and 200 ppm for caffeine was conducted, where internal standard theobromine was used. Some real samples were also detected with the instrument.

摘要

我们报告了喷墨和电喷雾电离 MS 的关联,以检测皮升液滴,其中液体体积及其在尖端上的位置可以精确控制,以形成用于分析物连续电离的超细液滴。单个矩形脉冲施加到喷墨微芯片上的压电装置上,以喷射每个皮升液滴,并且由计算机控制。优化了用于喷墨的驱动脉冲的电压和宽度,以使低粘度的溶剂具有可重现的喷射。每个液滴的体积约为 600 pl,并且考虑到液滴的相对标准偏差,选择了 10 个液滴的触发作为最佳入口模式。与一些材料进行了几次尝试后,使用高电压形成离子化的目标底物是石墨。高速摄像机用于捕获液滴的破裂过程。将喷墨嘴和尖端之间的距离设置为 2 厘米,以避免短路。检查了尖端的直径、液体的体积和浓度对质量强度的影响。小直径的尖端表现出更高的强度,检测限降低,而液体的小体积则具有更高的电离效率。在 1 至 200 ppm 范围内对咖啡因进行了线性回归,其中使用了内标可可碱。该仪器还检测了一些实际样品。

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