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Ion transport diagnostics in microsecond pulsed Grimm-type glow discharge time-of-flight mass spectrometer

机译:微秒脉冲格林式辉光放电飞行时间质谱仪中的离子迁移诊断

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摘要

A Grimm-type glow discharge ion source, operated in the microsecond pulsed mode, has been interfaced to a commercial time-of-flight mass spectrometer. Ion transport from the source to the mass spectrometer, an inherent limitation of a Grimm source and mass spectrometer combination, was evaluated. The primary discharge operating conditions found to influence transport efficiency were gas flow rate and source pressure. The configuration of the Grimm-type source also influenced ion transport, including use of a gas-directing sleeve device. The effect of transport efficiency was separated into two components: (1) total ion signal and (2) temporal resolution. The latter is an advantage afforded by use of a pulsed glow discharge source and time-of-flight spectrometer, which allows discrimination against interfering gaseous background ions by appropriate ion sampling time. Shown as an example is the identification of trace magnesium from potential background interference using an optimized source configuration based on this temporal resolution method. [References: 25]
机译:在微秒脉冲模式下运行的格里姆型辉光放电离子源已与商用飞行时间质谱仪连接。评估了离子从离子源到质谱仪的传输,这是格林源和质谱仪结合的固有局限性。发现影响运输效率的主要排放操作条件是气体流速和源压力。格林类型的离子源的配置也影响了离子的传输,包括使用了导气套筒装置。传输效率的影响分为两个部分:(1)总离子信号和(2)时间分辨率。后者是通过使用脉冲辉光放电源和飞行时间光谱仪提供的一个优点,该光谱仪可以通过适当的离子采样时间来区分干扰气体的背景离子。例如,使用基于这种时间分辨率方法的优化源配置从潜在的背景干扰中鉴定痕量镁。 [参考:25]

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