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首页> 外文期刊>Sensors and Actuators, A. Physical >A current controlled miniaturized non-radioactive electron emitter for atmospheric pressure chemical ionization based on thermionic emission
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A current controlled miniaturized non-radioactive electron emitter for atmospheric pressure chemical ionization based on thermionic emission

机译:基于热电子发射的用于大气压化学电离的电流控制小型化非放射性电子发射体

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摘要

In this paper, we introduce a simple to manufacture, emission current controlled, miniaturized non- radioactive electron source to provide free electrons at atmospheric pressure. In atmospheric pressure chemical ionization as usually used in ion mobility spectrometry radioactive beta minus sources provide free electrons with high kinetic energy to initiate a chemical gas phase ionization of the analytes. Here, classical thermionic emission from a heat controlled tungsten filament in vacuum is used to generate free electrons. These are then accelerated towards an electron transparent 300 nm thin Si3 N4-membrane through which the electrons are transferred from vacuum to atmospheric pressure. Both, the emitted electron current and the average kinetic electron energy can be controlled. For similar ionization pro- cesses as compared to radioactive beta minus sources we operate the electron source with an electron emission current at atmospheric pressure of 50 pA - corresponding to an activity of 300 MBq - and an average kinetic electron energy of 8.6 keV.
机译:在本文中,我们介绍了一种易于制造,受发射电流控制的小型化非放射性电子源,可在大气压下提供自由电子。在常压下,如离子迁移谱法中通常使用的化学电离,放射性β负离子源为自由电子提供高动能,以引发分析物的化学气相电离。在这里,真空中由热控制钨丝产生的经典热电子发射用于生成自由电子。然后将它们加速向电子透明的300 nm薄Si3 N4膜迁移,通过该膜将电子从真空转移到大气压。发射电子电流和平均动能都可以被控制。对于与放射性β负离子源相比类似的电离过程,我们在大气压为50 pA的电子发射电流(对应于300 MBq的活度)和8.6 keV的平均动电子能的情况下操作电子源。

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