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Effect of Space Charge on Resolving Power and Ion Loss in Ion Mobility Spectrometry

机译:离子迁移谱中空间电荷对分辨力和离子损失的影响

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The effect of space charge on the performance of an Ion Mobility Spectrometry (IMS) system becomes more important as the system is made smaller. We use the SIMION software package with the Statistical Diffusion Simulation (SDS) module and SIMION's new capability to solve the Poisson equation to study the effect of space charge on ion loss and resolving power in IMS systems. We consider IMS systems ranging in length from 50 mm to 150 mm and in diameter from 8.33 mm to 50 mm with a fixed electric field of 50 V/mm. We also examine a system with a length of 50 mm, a diameter of 16.7 mm, and an electric field of 16.7 V/mm. We assume that any charge density can be injected into the IMS system, and we have obtained expressions that predict the ion loss and resolving power of IMS systems as a function of input charge density and drift tube aspect ratio (length/diameter).
机译:随着系统变小,空间电荷对离子迁移谱(IMS)系统性能的影响变得越来越重要。我们将SIMION软件包与统计扩散模拟(SDS)模块一起使用,并使用SIMION的新功能来求解Poisson方程,以研究空间电荷对IMS系统中离子损失和分辨能力的影响。我们考虑长度为50 mm至150 mm,直径为8.33 mm至50 mm的IMS系统,其固定电场为50 V / mm。我们还检查了一个长度为50毫米,直径为16.7毫米,电场为16.7 V / mm的系统。我们假设可以将任何电荷密度注入到IMS系统中,并且我们已经获得了表达式,这些表达式可预测IMS系统的离子损失和分辨能力随输入电荷密度和漂移管纵横比(长度/直径)的变化。

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