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An ion optics for effective ion detection in single particle mass spectrometry

机译:用于单粒子质谱仪中有效离子检测的离子光学系统

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Recently, we reported that significant ion loss occurs prior to detection in conventional single particle mass spectrometry. A more serious type of loss is ion-kinetic-energy-dependent loss. This leads to significant errors in the measured chemical composition of nanoparticles, especially when they have a core-shell structure. In this paper, a novel ion optics for effective detection of ions generated from a single nanoparticle is designed. Using the commercial software SIMION, the trajectories of ions launched at different speeds inside a single particle mass spectrometer are simulated. The effects of changes are investigated with different repelling plates, Einzel lens additions, and substitutions of the tube electrode between extraction and acceleration grids on the ion flight. The best design was found when assembling the trials in the present condition. It was demonstrated experimentally that the new ion optics works well not only in theory, but also in practice. Copyright (c) 2007 John Wiley & Sons, Ltd.
机译:最近,我们报道了在传统的单颗粒质谱仪中检测之前发生了显着的离子损失。更为严重的损失类型是离子动力学能量依赖性损失。这会导致纳米颗粒的化学成分的测量出现重大错误,尤其是当它们具有核-壳结构时。在本文中,设计了一种新型离子光学器件,可有效检测单个纳米粒子产生的离子。使用商业软件SIMION,可以模拟单个粒子质谱仪内部以不同速度发射的离子的轨迹。使用不同的排斥板,添加了Einzel透镜以及在离子飞行中在提取栅格和加速栅格之间替换了管电极来研究变化的影响。在目前条件下组装试验时,发现了最佳设计。实验证明,新的离子光学系统不仅在理论上而且在实践中均能很好地发挥作用。版权所有(c)2007 John Wiley&Sons,Ltd.

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