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Incorporation of a venturi device in electrospray ionization

机译:在电喷雾电离中合并文丘里装置

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Electrospray ionization has grown to be one of the most commonly used ionization techniques for mass spectrometry, and efforts continue to improve its performance. Typically, the sprayer tip must be very close to the entrance orifice of the mass spectrometer in order to maximize the conduction of ions from the sprayer into the mass spectrometer. However, because of space-charge repulsion, most ions never reach the sampling orifice. In this work, an industrial air amplifier, for which the working mechanism is based on venturi and coanda effects, was added between an electrospray ionization source and a time-of-flight mass spectrometer. When a series of reserpine solutions (0.5, 1.0, 5.0, and 10.0 muM) were monitored using mass spectrometry, an over 5-fold increase in m/z 609.3 ion intensity was measured for a separation distance of 14 mm. between the electrospray tip and interface capillary inlet, as compared to when the electrospray tip was in its normal position 1 mm in front of the inlet without the amplifier. When a voltage was applied to the air amplifier to further assist in focusing the electrosprayed ions, an similar to18-fold increase in m/z 609.3 ion intensity was obtained. In addition, a 34-fold reduction in method detection limit was observed. [References: 35]
机译:电喷雾电离已发展成为质谱分析中最常用的电离技术之一,并且不断努力改善其性能。通常,喷雾器尖端必须非常靠近质谱仪的入口孔,以使离子从喷雾器到质谱仪的传导最大化。但是,由于空间电荷排斥,大多数离子永远不会到达采样孔。在这项工作中,在电喷雾电离源和飞行时间质谱仪之间增加了一个工业空气放大器,其工作机制基于文丘里管和柯恩达效应。使用质谱仪监测一系列利血平溶液(0.5、1.0、5.0和10.0μM)时,对于14 mm的分离距离,m / z 609.3离子强度增加了5倍以上。与电喷雾头在其正常位置相比,在没有放大器的情况下,在入口前方1毫米处时,电喷雾头和接口毛细管入口之间的距离要小一些。当向空气放大器施加电压以进一步帮助聚焦电喷雾离子时,获得的m / z 609.3离子强度增加了18倍。此外,观察到方法检测限降低了34倍。 [参考:35]

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