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Theoretical Investigation of Small Polyatomic Ions Observed in Inductively Coupled Plasma Mass Spectrometry:  HxCO+ and HxN2+ (x = 1, 2, 3)

机译:在电感耦合等离子体质谱法中观察到的小多原子离子的理论研究:HxCO +和HxN2 +(x = 1,2,3)

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摘要

Two series of small polyatomic ions, HxCO+ and HxN2+ (x = 1, 2, 3), were systematically characterized using three correlated theoretical techniques:  density functional theory using the B3LYP functional, spin-restricted second-order perturbation theory, and singles + doubles coupled cluster theory with perturbative triples. On the basis of thermodynamic data, the existence of these ions in inductively coupled plasma mass spectrometry (ICP-MS) experiments is not surprising since the ions are predicted to be considerably more stable than their corresponding dissociation products (by 30−170 kcal/mol). While each pair of isoelectronic ions exhibit very similar thermodynamic and kinetic characteristics, there are significant differences within each series. While the mechanism for dissociation of the larger ions occurs through hydrogen abstraction, the triatomic ions (HCO+ and HN2+) appear to dissociate by proton abstraction. These differing mechanisms help to explain large differences in the abundances of HN2+ and HCO+ observed in ICP-MS experiments.
机译:使用三种相关的理论技术对两个系列的小多原子离子HxCO +和HxN2 +(x = 1,2,3)进行了系统表征:使用B3LYP泛函的密度泛函理论,自旋受限的二阶微扰理论以及单打+双打耦合簇理论与摄动三元组。根据热力学数据,电感耦合等离子体质谱(ICP-MS)实验中这些离子的存在不足为奇,因为据预测离子比其相应的解离产物要稳定得多(30-170 kcal / mol )。虽然每对等电子离子均显示出非常相似的热力学和动力学特性,但每个系列之间存在显着差异。虽然较大离子的离解机理是通过氢提取而发生的,但三原子离子(HCO +和HN2 +)似乎会通过质子提取而离解。这些不同的机制有助于解释在ICP-MS实验中观察到的HN2 +和HCO +丰度的巨大差异。

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