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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Characterization of the aerosol produced by infrared femtosecond laser ablation of polyacrylamide gels for the sensitive inductively coupled plasma mass spectrometry detection of selenoproteins
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Characterization of the aerosol produced by infrared femtosecond laser ablation of polyacrylamide gels for the sensitive inductively coupled plasma mass spectrometry detection of selenoproteins

机译:红外飞秒激光烧蚀聚丙烯酰胺凝胶产生的气溶胶的特征,用于硒蛋白的灵敏感应耦合等离子体质谱检测

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摘要

A 2D high repetition rate femtosecond laser ablation strategy (2-mm wide lane) previously developed for the detection of selenoproteins in gel electrophoresis by inductively coupled plasma mass spectrometry was found to increase signal sensitivity by a factor of 40 compared to conventional nanosecond ablation (0.12-mm wide lane) [G. Ballihaut, F. Claverie, C. Pecheyran, S. Mounicou, R. Grimaud and R. Lobinski, Sensitive Detection of Selenoproteins in Gel Electrophoresis by High Repetition Rate Femtosecond Laser Ablation-lnductively Coupled Plasma Mass Spectrometry, Anal. Chem. 79 (2007) 6874-6880]. Such improvement couldn't be explained solely by the difference of amount of material ablated, and then, was attributed to the aerosol properties. In order to validate this hypothesis, the characterization of the aerosol produced by nanosecond and high repetition rate femtosecond laser ablation of polyacrylamide gels was investigated. Our 2D high repetition rate femtosecond laser ablation strategy of 2-mm wide lane was found to produce aerosols of similar particle size distribution compared to nanosecond laser ablation of 0.12-mm wide lane, with 38% mass of particles <1 μm. However, at high repetition rate, when the ablated surface was reduced, the particle size distribution was shifted toward thinner particle diameter (up to 77% for a 0.12-mm wide lane at 285 μm depth). Meanwhile, scanning electron microscopy was employed to visualize the morphology of the aerosol. In the case of larger ablation, the fine particles ejected from the sample were found to form agglomerates due to higher ablation rate and then higher collision probability. Additionally, investigations of the plasma temperature changes during the ablation demonstrated that the introduction of such amount of polyacrylamide gel particles had very limited impact on the ICP source (ΔT-25 ± 5K). This suggests that the cohesion forces between the thin particles composing these large aggregates were weak enough to have negligible impact on the ICPMS detection.
机译:以前开发用于感应电泳等离子体质谱法检测凝胶电泳中硒蛋白的二维高重复率飞秒激光消融策略(2毫米宽泳道),与传统的纳秒消融相比,信号灵敏度提高了40倍(0.12) -mm宽的车道)[G。 Ballihaut,F.Claverie,C.化学79(2007)6874-6880]。不能仅通过烧蚀的材料量的不同来解释这种改进,然后归因于气溶胶特性。为了验证该假设,研究了聚丙烯酰胺凝胶的纳秒级和高重复率飞秒激光烧蚀产生的气溶胶的特性。我们发现,与0.12毫米宽车道的纳秒激光烧蚀相比,我们的2mm宽车道的2D高重复率飞秒激光烧蚀策略可产生相似的粒径分布气溶胶,其中38%的粒子质量小于1μm。但是,在高重复率下,当烧蚀的表面减小时,粒度分布向更薄的粒径移动(对于深度为285μm的0.12 mm通道,高达77%)。同时,使用扫描电子显微镜观察气溶胶的形态。在较大的烧蚀情况下,由于较高的烧蚀率和较高的碰撞概率,发现从样品中喷出的微粒形成团块。此外,对消融过程中等离子体温度变化的研究表明,引入这种量的聚丙烯酰胺凝胶颗粒对ICP来源的影响非常有限(ΔT-25±5K)。这表明组成这些大聚集体的细颗粒之间的内聚力足够弱,以至于对ICPMS检测的影响可忽略不计。

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