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使用近红外飞秒激光烧蚀电感耦合等离子体质谱法对聚合物涂层钢样品进行深度分析。

Depth analysis of polymer-coated steel samples using near-infrared femtosecond laser ablation inductively coupled plasma mass spectrometry.

作者信息

Mateo M Paz, Garcia Carmen C, Hergenröder R

机构信息

Laboratorio de Aplicaciones Industriales del Laser, Universidad de A Coruña, C/ Mendizabal s/n, 15403 Ferrol (A Coruña), Spain.

出版信息

Anal Chem. 2007 Jul 1;79(13):4908-14. doi: 10.1021/ac070241q. Epub 2007 Jun 5.

Abstract

The viability of near-infrared femtosecond laser ablation (fs-LA) inductively coupled plasma mass spectrometry (ICPMS) for the in-depth analysis of polymer coatings over galvanized steel substrates has been studied. A good depth resolution was obtained modifying the femtosecond Gaussian beam to a flat-top beam by using a liquid-crystal display. In order to avoid mixing of information coming from successive shots, a low repetition rate was accomplished and signals were monitored shot by shot. Different kinds of coatings were used to demonstrate the capability of femtosecond ablation for depth-profiling analysis. Ablation was conducted under He atmosphere, after sample cell Ar was admixed. The depth profiles obtained by LA-ICPMS are in good agreement with those obtained by GD-OES for the three analyzed samples. In cases where due to averaging over several millimeter sample roughness determines the depth resolution of GD-OES, it was found that LA-ICPMS achieves better depth resolution due to the better lateral resolution. The depth resolution obtained by LA-ICPMS was found to be 240 nm and 2.3 microm, for a hot-dip galvanized steel (HDGS) and a polymer-polymer-coated HDGS, respectively, compared to the 2.2 and 4.5 microm achieved with GD-OES for the same samples.

摘要

研究了近红外飞秒激光烧蚀(fs-LA)电感耦合等离子体质谱(ICPMS)用于深入分析镀锌钢基材上聚合物涂层的可行性。通过使用液晶显示器将飞秒高斯光束修改为平顶光束,获得了良好的深度分辨率。为了避免连续脉冲信息的混合,实现了低重复率,并逐脉冲监测信号。使用了不同种类的涂层来证明飞秒烧蚀用于深度剖析分析的能力。在混合样品池氩气后,在氦气氛下进行烧蚀。对于三个分析样品,LA-ICPMS获得的深度剖析与GD-OES获得的深度剖析结果吻合良好。在由于几毫米样品粗糙度的平均值决定了GD-OES的深度分辨率的情况下,发现由于更好的横向分辨率,LA-ICPMS实现了更好的深度分辨率。对于热浸镀锌钢(HDGS)和聚合物-聚合物涂层的HDGS,LA-ICPMS获得的深度分辨率分别为240 nm和2.3微米,而相同样品使用GD-OES获得的深度分辨率为2.2和4.5微米。

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