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Study and optimization of key parameters of a laser ablation ion mobility spectrometer

机译:激光烧蚀离子迁移率光谱仪的关键参数的研究与优化

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Ion Mobility Spectrometry (IMS), having an advantage in real-time and on-line detection, is an atmospheric pressure detecting technique. LA-IMS (Laser Ablation Ion Mobility Spectrometry) uses Nd-YAG laser as ionization source, whose energy is high enough to ionize metal. In this work, we tested the signal in different electric field intensity by a home-made ion mobility spectrometer, using silicon wafers the sample. The transportation of metal ions was match with the formula: T_d =d/K? 1/E, when the electric field intensity is greater than 350v/cm. The relationship between signal intensity and collection angle (the angle between drift tube and the surface of the sample) was studied. With the increasing of the collection angle, signal intensity had a significant increase; while the variation of incident angle of the laser had no significant influence. The signal intensity had a 140% increase when the collection angle varied from 0 to 45 degree, while the angle between the drift tube and incident laser beam keeping the same as 90 degree. The position of ion gate in LA-IMS(Laser Ablation Ion Mobility Spectrometry) is different from the traditional ones for the kinetic energy of the ions is too big, if the distance between ion gate and sampling points less than 2.5cm the ion gate will not work, the ions could go through ion gate when it closed. The SNR had been improved by define the signal when the ion gate is closed as background signal, the signal noise including shock wave and electrical field perturbation produced during the interaction between laser beam and samples is eliminated when the signal that the ion gate opened minus the background signal.
机译:在实时和在线检测中具有优点的离子迁移光谱法(IMS)是大气压检测技术。 La-IMS(激光烧蚀离子迁移谱图)使用Nd-YAG激光作为电离源,其能量足够高以电离金属。在这项工作中,我们使用硅晶片样品通过自制离子迁移光谱仪测试了不同电场强度的信号。金属离子的运输与配方:T_D = D / K匹配? 1 / E,当电场强度大于350V / cm时。研究了信号强度与集合角度(漂移管之间的角度和样品的表面)之间的关系。随着收集角度的增加,信号强度大幅增加;虽然激光的入射角的变化没有显着影响。当收集角度从0到45度变化时,信号强度增加了140%,而漂移管和入射激光束之间的角度保持相同为90度。如果离子栅极与采样点之间的距离小于2.5cm,则离子栅极(激光烧蚀离子迁移光谱率)的位置与离子的动能太大的传统栅极不同。离子栅极的距离小于2.5cm不起作用,在关闭时,离子可以通过离子门。当离子栅极关闭作为背景信号时,通过定义信号来改善SNR,当离子门打开的信号打开时,消除了在激光束和样品之间的相互作用期间产生的冲击波和电场扰动的信号噪声背景信号。

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