首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Theoretical and experimental investigation of matrix effects observed in emission spectra of binary mixtures of sodium and copper and magnesium and copper pressed powders
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Theoretical and experimental investigation of matrix effects observed in emission spectra of binary mixtures of sodium and copper and magnesium and copper pressed powders

机译:钠和铜,镁和铜压粉二元混合物发射光谱中观察到的基体效应的理论和实验研究

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The goal of this work was to investigate the matrix effect of copper in the presence of sodium or magnesium in a laser-induced plasma. Varying amounts of copper were mixed and pressed with a constant amount of sodium or magnesium and a stearic acid binder. Experimental parameters such as delay time and laser pulse energy were varied to observe trends in the emission intensity of the Na I 588.99 nm, Na I 589.59 nm, Mg I 277.98 nm, and Mg II 279.08 nm lines. Experimental observations are supported by theoretical calculations and modeling that show the Na I and Mg I emission intensities increase in the presence of copper while the Mg II line intensity decreases due to the increase in electron density (Ne) of the plasma when copper is added. The increase in electron density changes the population of the atomic species within the plasma through an increase in recombination of ions with electrons, shifting the populations toward more neutral states, providing an explanation for the observed matrix effects found in these, and many previous, studies. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项工作的目的是研究在激光诱导的等离子体中存在钠或镁的情况下铜的基质效应。将不同量的铜混合,并与恒定量的钠或镁和硬脂酸粘合剂压制。改变诸如延迟时间和激光脉冲能量的实验参数,以观察Na I 588.99 nm,Na I 589.59 nm,Mg I 277.98 nm和Mg II 279.08 nm线的发射强度趋势。实验观察得到理论计算和模型的支持,这些理论计算和模型表明,在添加铜的情况下,Na I和Mg I的发射强度增加,而由于添加铜时等离子体的电子密度(Ne)增加,Mg II线强度降低。电子密度的增加通过离子与电子的复合增加而改变了等离子体中原子种类的数量,使这些数量向更中性的状态转移,从而为观察到的这些以及许多以前的研究中发现的基质效应提供了解释。 (C)2016 Elsevier B.V.保留所有权利。

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