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The effect of ultrafast laser wavelength on ablation properties and implications on sample introduction in inductively coupled plasma mass spectrometry

机译:超快激光波长对烧蚀性能的影响以及对电感耦合等离子体质谱法中样品引入的影响

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摘要

We investigated the role of femtosecond (fs) laser wavelength on laser ablation (LA) and its relation to laser generated aerosol counts and particle distribution, inductively coupled plasma-mass spectrometry (ICP-MS) signal intensity, detection limits, and elemental fractionation. Four different NIST standard reference materials (610, 613, 615, and 616) were ablated using 400 nm and 800 nm fs laser pulses to study the effect of wavelength on laser ablation rate, accuracy, precision, and fractionation. Our results show that the detection limits are lower for 400 nm laser excitation than 800 nm laser excitation at lower laser energies but approximately equal at higher energies. Ablation threshold was also found to be lower for 400 nm than 800 nm laser excitation. Particle size distributions are very similar for 400 nm and 800 nm wavelengths; however, they differ significantly in counts at similar laser fluence levels. This study concludes that 400 nm LA is more beneficial for sample introduction in ICP-MS, particularly when lower laser energies are to be used for ablation.
机译:我们研究了飞秒(fs)激光波长在激光烧蚀(LA)上的作用及其与激光产生的气溶胶计数和颗粒分布,电感耦合等离子体质谱(ICP-MS)信号强度,检测限和元素分离的关系。使用400 nm和800 nm fs激光脉冲烧蚀四种不同的NIST标准参考材料(610、613、615和616),以研究波长对激光烧蚀速率,准确性,精度和分级的影响。我们的结果表明,在较低的激光能量下,400 nm激光激发的检出限低于800 nm的激光激发下限,而在较高的能量下,检出限大致相等。还发现400nm的烧蚀阈值比800nm的激光激发低。对于400 nm和800 nm波长,粒度分布非常相似。但是,在相似的激光注量水平下,它们的计数差异很大。这项研究得出的结论是,对于ICP-MS中的样品引入,400 nm LA更有利,特别是在使用较低激光能量进行消融时。

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