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首页> 外文期刊>Journal of Microelectromechanical Systems >A Microfabricated Nebulizer for Liquid Vaporization in Chemical Analysis
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A Microfabricated Nebulizer for Liquid Vaporization in Chemical Analysis

机译:化学分析中用于液体蒸发的超细雾化器

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摘要

A miniaturized nebulizer chip for vaporization of liquid samples for mass spectrometry has been designed, fabricated, and characterized for fluidic and thermal performance. Silicon/glass chip has a liquid sample channel placed centrally between symmetric nebulizer gas channels. The liquid sample is nebulized and vaporised by an integrated platinum heater. The vaporized sample exits through an etched nozzle, and is ionized by an external corona needle. The ions are analysed by a mass spectrometer. The chip has been fabricated in both anisotropically wet etched and DRIE versions in silicon, with an anodically bonded Pyrex glass cover plate. Three different fluidic inlet designs are presented, with both through-wafer and edge insert versions. The shape of the erupting gas jet has been visualized by infrared thermography by using a low-diffusivity imaging screen and high heat capacity helium as a test gas. Dimensions of the jet's thermal footprint on the screen show that the jet is very narrow and confined, and this is confirmed in mass spectrometry results. This confined jet supplies the sample to the ionization region near corona tip, enabling efficient use of very small sample amounts and submicroliter flows.1591
机译:已经设计,制造了一种用于雾化用于质谱分析的液体样品的小型雾化器芯片,并针对其流体和热性能进行了表征。硅/玻璃芯片的液体样品通道位于对称雾化器气体通道之间的中央。液体样品通过集成的铂加热器雾化和蒸发。汽化的样品通过蚀刻喷嘴排出,并通过外部电晕针电离。离子通过质谱仪分析。该芯片采用各向异性湿法蚀刻和DRIE两种形式在硅中制造,并带有阳极粘合的Pyrex玻璃盖板。提出了三种不同的流体入口设计,包括通孔和边缘嵌件版本。通过使用低扩散率成像屏和高热容氦气作为测试气体,通过红外热成像法可以观察到喷发气体的形状。屏幕上喷嘴的热足迹尺寸表明喷嘴非常狭窄且受限,这在质谱分析结果中得到了证实。这种受限的射流将样品供应到电晕尖端附近的电离区域,从而能够有效利用非常少量的样品和亚微升流量1591。

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