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Initial velocity distributions of ions generated by in-flight laser desorption/ionization of individual polystyrene latex microparticles as studied by the delayed ion extraction method

机译:通过延迟离子提取方法研究飞行中的单个聚苯乙烯胶乳微粒的激光解吸/电离产生的离子的初始速度分布

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The delayed ion extraction method has been used to study characteristics of the initial velocity distributions of positive and negative ions produced simultaneously by laser desorption/ionization (LDI) from non-impacted single aerosol polymeric particles, using a bipolar time-of-flight (TOF) instrument (LAMPAS 2). Due to the geometry of the setup and the characteristics of the ablation process, only the projections of the velocities on the axis of the mass spectrometer can be directly studied. Additionally, since the mean initial velocity under these conditions should be close to zero, it was necessary to extend the method by taking into account higher order contributions of the velocity distribution. Theoretical expressions for these higher order terms are presented and discussed. The bipolar characteristics of the instrument permit evaluation and treatment of a possible instrumental artifact caused by small inclinations of the ionizing laser with respect to the ideal incidence direction. Results of a number of experiments are presented and discussed in relation to the theoretical expressions presented, and to possible ablation scenarios. Evidence pointing out that, under our experimental conditions, only partial ablation of the latex particles occurs was obtained. The variance of the distribution of the projection of the initial velocities can be directly estimated from these results. By assuming that the total initial velocities of the ions are developed completely according to a single-temperature adiabatic expansion mechanism, temperatures of approximately 50 K/Da can be assigned to the ion clouds from the variance estimations. If a two-temperature model is used, a radial temperature of about 100 K/Da results. These values are in reasonable agreement with results for polymer ablation from the literature. Copyright (C) 2004 John Wiley Sons, Ltd.
机译:延迟离子提取方法已被用于研究通过双极性飞行时间(TOF)从非撞击的单个气溶胶聚合物颗粒中通过激光解吸/电离(LDI)同时产生的正离子和负离子的初始速度分布的特性。 )仪器(LAMPAS 2)。由于装置的几何形状和消融过程的特性,只能直接研究速度在质谱仪轴上的投影。另外,由于在这些条件下的平均初始速度应接近于零,因此有必要通过考虑速度分布的更高阶贡献来扩展该方法。提出并讨论了这些高阶项的理论表达式。仪器的双极特性允许评估和处理由电离激光相对于理想入射方向的小倾角引起的可能的仪器伪影。提出和讨论了许多实验的结果,这些结果与提出的理论表达式以及可能的消融方案有关。证据表明,在我们的实验条件下,仅发生了部分乳胶颗粒的烧蚀。可以从这些结果直接估计初始速度的投影分布的方差。通过假设离子的总初始速度完全根据单温度绝热膨胀机制得到发展,可以从方差估计中将大约50 K / Da的温度分配给离子云。如果使用双温度模型,则径向温度约为100 K / Da。这些值与文献中聚合物消融的结果合理地吻合。版权所有(C)2004 John Wiley Sons,Ltd.

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