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Effect of Ammonia on the Gas-Phase Hydration of the Common Atmospheric Ion HSO4−

机译:氨对普通大气离子HSO4-气相水化的影响

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摘要

Hydration directly affects the mobility, thermodynamic properties, lifetime and nucleation rates of atmospheric ions. In the present study, the role of ammonia on the formation of hydrogen bonded complexes of the common atmospheric hydrogensulfate (HSO4) ion with water has been investigated using the Density Functional Theory (DFT). Our findings rule out the stabilizing effect of ammonia on the formation of negatively charged cluster hydrates and show clearly that the conventional (classical) treatment of ionic clusters as presumably more stable compared to neutrals may not be applicable to pre-nucleation clusters. These considerations lead us to conclude that not only quantitative but also qualitative assessment of the relative thermodynamic stability of atmospheric clusters requires a quantum-chemical treatment.
机译:水合直接影响大气离子的迁移率,热力学性质,寿命和成核速率。在本研究中,已经使用密度泛函理论(DFT)研究了氨在大气中常见的硫酸氢根(HSO4 -)离子与氢键形成的络合物中的作用。我们的发现排除了氨对带负电荷团簇水合物形成的稳定作用,并清楚地表明,与中性粒子相比,离子团簇的常规(经典)处理可能更稳定,可能不适用于预成核团簇。这些考虑使我们得出结论,对大气团簇的相对热力学稳定性进行定量和定性评估都需要进行量子化学处理。

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