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Evidence for charge transfer from hydrogen molecular ions to copper atoms in a neon-hydrogen analytical glow discharge

机译:氖氢分析辉光放电中电荷从氢分子离子转移到铜原子的证据

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摘要

Extensive investigations have been carried out in recent years on the effects of the presence of small amounts of molecular gases in analytical glow discharges (GDs) using argon as the plasma gas. Complementary studies using neon have shown that, when hydrogen is added to a neon discharge with a copper sample, the intensities of lines from most of the upper energy levels in the Cu II 3d~9(~2D)4p sub-configuration decrease. However, the 224.700 nm spectral line and other lines from the same upper level (~3P_2~0) increase in intensity and this effect cannot be produced by the excitation processes normally considered. We show that asymmetric charge transfer (ACT) excitation by hydrogen molecules (H_2-ACT) is the most likely explanation, the first time this process has been reported for any element in analytical GDs. We also explain why a similar effect is not observed with added nitrogen, although the ionization energies of hydrogen and nitrogen molecules are very similar.
机译:近年来,已对使用氩气作为等离子体气体的分析辉光放电(GDs)中存在少量分子气体的影响进行了广泛研究。使用氖的补充研究表明,当将氢添加到带有铜样品的氖放电中时,来自Cu II 3d〜9(〜2D)4p亚构型的大多数较高能级的谱线强度降低。但是,224.700 nm光谱线和其他来自同一较高水平(〜3P_2〜0)的谱线的强度增加,并且这种影响无法通过通常考虑的激发过程产生。我们显示氢分子(H_2-ACT)的不对称电荷转移(ACT)激发是最可能的解释,这是首次针对分析GD中的任何元素报告此过程。我们还解释了为什么添加氢不会观察到类似的效果,尽管氢和氮分子的电离能非常相似。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2016年第11期|2175-2181|共7页
  • 作者单位

    London Metropolitan University, 166-220 Holloway Road, London, N7 8DB, UK.;

    London Metropolitan University, 166-220 Holloway Road, London, N7 8DB, UK.;

    IFW Dresden, Institute for Complex Materials, P.O. Box 270116, D-01171 Dresden, Germany;

    LECO Instrumente Plzen spol. s r. o., Plaska 66, 32300 Plzen, Czech Republic;

    Blackett Laboratory, Imperial College London, London, SW7 2AZ, UK;

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