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Development of Remote Sampling ESI Mass Spectrometry for the Rapid and Automatic Analysis of Multiple Samples

机译:远程采样ESI质谱技术的开发可快速自动分析多个样品

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摘要

We report on combining a self-aspirated sampling probe and an ESI source using a single metal capillary which is electrically grounded and safe for use by the operator. To generate an electrospray, a negative H.V. is applied to the counter electrode of the ESI emitter to operate in positive ion mode. The sampling/ESI capillary is enclosed within another concentric capillary similar to the arrangement for a standard pneumatically assisted ESI source. The suction of the liquid sample is due to the Venturi effect created by the high-velocity gas flow near the ESI tip. In addition to serving as the mechanism for suction, the high-velocity gas flow also assists in the nebulization of charged droplets, thus producing a stable ion signal. Even though the potential of the ion source counter electrode is more negative than the mass spectrometer in the positive ion mode, the electric field effect is not significant if the ion source and the mass spectrometer are separated by a sufficient distance. Ion transmission is achieved by the viscous flow of the carrier gas. Using the present arrangement, the user can hold the ion source in a bare hand and the ion signal appears almost immediately when the sampling capillary is brought into contact with the liquid sample. The automated analysis of multiple samples can also be achieved by using motorized sample stage and an automated ion source holder.
机译:我们报告了使用一个单独的金属毛细管将自吸式采样探头和一个ESI离子源相结合的情况,该毛细管已电气接地并且操作员可以安全使用。为了产生电喷雾,负H.V.施加到ESI发射极的反电极上以正离子模式运行。采样/ ESI毛细管被封闭在另一个同心毛细管中,类似于标准气动辅助ESI离子源的布置。液体样品的抽吸归因于ESI尖端附近的高速气流产生的文丘里效应。高速气流除了用作吸引装置外,还有助于带电液滴的雾化,从而产生稳定的离子信号。即使在正离子模式下离子源对电极的电位比质谱仪更负,但如果离子源和质谱仪之间的距离足够远,电场效应也不会很大。通过载气的粘性流可以实现离子传输。使用本装置,使用者可以赤手握住离子源,并且当采样毛细管与液体样品接触时,离子信号几乎立即出现。通过使用电动样品台和自动离子源固定器,也可以实现对多个样品的自动分析。

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