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Use of sol-gels as solid matrixes for trace analysis by UV laser ablation and laser-enhanced ionization detection

机译:使用溶胶-凝胶作为固体基质,通过紫外激光烧蚀和激光增强电离检测进行痕量分析

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摘要

Zirconium and silicon sol-gels were investigated as solid materials for trace elemental analysis of pelletized solid samples by laser ablation and laser-enhanced ionization. The highly homogeneous dispersion of an internal standard spiked in the solid material obtained with the sol-gel formation process leads to a significant improvement in signal repeatability and to an increase in the precision of measurements through better correction of variations in the laser ablation rate. Signal repeatability values of 5-8% RSD were obtained for Ph in NIST 1632c Bituminous Coal sample pellets prepared using both sol-gels, as compared to 9-21% for graphite-based sample pellets. Furthermore, the zirconium sol-gel was shown to offer better resilience to signal bias due to preferential ablation and a more accurate correction of ablation rate using the internal standardization method.
机译:研究了锆和硅溶胶凝胶作为固体材料,通过激光烧蚀和激光增强电离对丸状固体样品进行痕量元素分析。通过溶胶-凝胶形成工艺获得的固体材料中掺入的内标物的高度均匀分散,可通过更好地校正激光烧蚀速率的变化,显着改善信号重复性并提高测量精度。在使用两种溶胶-凝胶制备的NIST 1632c烟煤样品丸中,Ph的信号重复性值均为5-8%RSD,而石墨基样品丸为9-21%。此外,锆溶胶凝胶由于优先消融而显示出更好的信号偏置弹性,并且使用内部标准化方法可以更精确地校正消融速率。

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