Khumaeni Ali, Budi Wahyu Setia, Kurihara Kazuyoshi, Kurniawan Hendrik, Kagawa Kiichiro
Department of Physics, Faculty of Science and Mathematics, Diponegoro University, Semarang 50275, Indonesia.
Department of Physics, Faculty of Education, University of Fukui, Bunkyo 3-9-1, Fukui 910-8507, Japan.
Heliyon. 2020 Aug 10;6(8):e04670. doi: 10.1016/j.heliyon.2020.e04670. eCollection 2020 Aug.
Trace elemental analysis on a surface of material has been recently imperative to be carried out especially in material industries. In this study, sophisticated setup of laser-induced breakdown spectroscopy has been arranged and demonstrated by employing vaporization technique for the trace elemental analysis on a surface of material without ablating the material itself. Experimentally, a pulse transversely excited atmospheric CO laser was directed and defocused at +5 mm on a Si surface at inclining degree of approximately 25 to vaporize the trace metal element from the Si surface to the Pt mesh combined with Cu plate. The vaporized trace metal element then attached and deposited on the mesh surface. The trace metal attached-Pt mesh was then bombarded by focused laser beam to induce a luminous plasma and finally the trace element was identified. Results certified that sensitive trace elemental analysis of Cr deposited on the Si surface has been successfully carried out without any ablation of Si surface. Good linear calibration curve of Cr with an intercept zero was produced, which results in limit of detection of Cr of approximately 100 ppb.
最近,对材料表面进行痕量元素分析在材料工业中变得尤为必要。在本研究中,通过采用汽化技术对材料表面进行痕量元素分析而不烧蚀材料本身,已安排并展示了复杂的激光诱导击穿光谱装置。实验上,将脉冲横向激发大气压CO激光以约25度的倾斜度对准并在硅表面上+5mm处散焦,以将痕量金属元素从硅表面汽化到与铜板结合的铂网上。汽化的痕量金属元素随后附着并沉积在网表面。然后用聚焦激光束轰击附着有痕量金属的铂网以诱导发光等离子体,最终鉴定出痕量元素。结果证明,已成功对沉积在硅表面的铬进行了灵敏的痕量元素分析,而硅表面没有任何烧蚀。产生了截距为零的铬的良好线性校准曲线,这导致铬的检测限约为100 ppb。