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The influence of laser pulse duration and energy on ICP-MS signal intensity elemental fractionation and particle size distribution in NIR fs-LA-ICP-MS

机译:激光脉冲持续时间和能量对NIR fs-LA-ICP-MS中ICP-MS信号强度元素分级和粒径分布的影响

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摘要

Laser parameters, typically wavelength, pulse width, irradiance, repetition rate, and pulse energy, are critical parameters which influence the laser ablation process and thereby influence the LA-ICP-MS signal. In recent times, femtosecond laser ablation has gained popularity owing to the reduction in fractionation related issues and improved analytical performance which can provide matrix-independent sampling. The advantage offered by fs-LA is due to shorter pulse duration of the laser as compared to the phonon relaxation time and heat diffusion time. Hence the thermal effects are minimized in fs-LA. Recently, fs-LA-ICP-MS demonstrated improved analytical performance as compared to ns-LA-ICP-MS, but detailed mechanisms and processes are still not clearly understood. Improvement of fs-LA-ICP-MS over ns-LA-ICP-MS elucidates the importance of laser pulse duration and related effects on the ablation process. In this study, we have investigated the influence of laser pulse width (40 fs to 0.3 ns) and energy on LA-ICP-MS signal intensity and repeatability using a brass sample. Experiments were performed in single spot ablation mode as well as rastering ablation mode to monitor the Cu/Zn ratio. The recorded ICP-MS signal was correlated with total particle counts generated during laser ablation as well as particle size distribution. Our results show the importance of pulse width effects in the fs regime that becomes more pronounced when moving from femtosecond to picosecond and nanosecond regimes.
机译:激光参数(通常是波长,脉冲宽度,辐照度,重复频率和脉冲能量)是影响激光烧蚀过程并进而影响LA-ICP-MS信号的关键参数。近年来,由于减少了与分馏有关的问题并提高了分析性能(可提供独立于基质的采样),飞秒激光消融已获得普及。 fs-LA提供的优势是由于与声子弛豫时间和热扩散时间相比,激光的脉冲持续时间较短。因此,fs-LA中的热效应最小。最近,与ns-LA-ICP-MS相比,fs-LA-ICP-MS表现出更高的分析性能,但仍不清楚其详细的机理和过程。与ns-LA-ICP-MS相比,fs-LA-ICP-MS的改进阐明了激光脉冲持续时间以及对消融过程的相关影响的重要性。在这项研究中,我们使用黄铜样品研究了激光脉冲宽度(40 fs至0.3 ns)和能量对LA-ICP-MS信号强度和可重复性的影响。在单点烧蚀模式以及光栅烧蚀模式下进行实验以监控Cu / Zn比。记录的ICP-MS信号与激光烧蚀过程中产生的总颗粒数以及粒度分布相关。我们的结果表明,在fs模式下,脉冲宽度效应的重要性在从飞秒模式切换到皮秒和纳秒模式时变得更加明显。

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