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Micro-laser-induced breakdown spectroscopy technique: a powerful method for performing quantitative surface mapping on conductive and nonconductive samples

机译:微激光诱导击穿光谱技术:一种用于对导电和非导电样品进行定量表面映射的强大方法

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摘要

Laser-induced breakdown spectroscopy (LIBS) has been applied mainly to bulk analysis of solids, liquids, and gases and less frequently for elemental microanalysis of solid surfaces. A micro-LIBS device devoted to analysis of the distribution of elements on surfaces is described. This device offers rapid access with a 3-μm spatial resolution to the microchemical structures of both conductive and nonconductive samples. Quantitative microchemical results of applications to ceramics are reported. By the use of a time-resolved acquisition spectrum, cerium in a uranium matrix was characterized with a cerium detection limit of 1.14%. Calibration curves obtained with manipulations during 1 year facilitated evaluations of reproducibility and repeatability. A 2% single-shot repeatability with a calibration reproducibility of ~7% is reported.
机译:激光诱导击穿光谱法(LIBS)已主要用于固体,液体和气体的本体分析,而很少用于固体表面的元素微分析。描述了一种专用于分析表面上元素分布的微型LIBS设备。该设备可以以3μm的空间分辨率快速访问导电和非导电样品的微化学结构。报告了在陶瓷上应用的定量微化学结果。通过使用时间分辨的采集光谱,铀基质中的铈的特征在于铈的检出限为1.14%。一年内通过操作获得的校准曲线有助于评估可重复性和可重复性。据报道,单次重复性为2%,校准重复性为7%。

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    《Applied optics》 |2003年第30期|共9页
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