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SO(=0、1和2)分子系统:表征及其对大气行星的影响

SO ( = 0, 1, and 2) Molecular Systems: Characterization and Atmospheric Planetary Implications.

作者信息

Hochlaf Majdi, Linguerri Roberto, Cheraki Mohamed, Ayari Tarek, Ben Said Ridha, Feifel Raimund, Chambaud Gilberte

机构信息

Université Gustave Eiffel, COSYS/LISIS, 5 Bd Descartes 77454, Champs sur Marne, France.

Department of Chemistry, College of Science and Arts, Qassim University, Ar Rass 58863, Saudi Arabia.

出版信息

J Phys Chem A. 2021 Mar 11;125(9):1958-1971. doi: 10.1021/acs.jpca.0c11407. Epub 2021 Feb 26.

Abstract

We use accurate methodologies at the coupled cluster level ((R)CCSD(T)) and its explicitly correlated version ((R)CCSD(T)-F12) to investigate the electronic structure, relative stability, and spectroscopy of the stable isomers of the [SO] system and of some of its cations and dications, with a special focus on the most relevant isomers that could be involved in terrestrial and planetary atmospheres. This work identifies several stable isomers (10 neutral, 8 cationic, and 5 dicationic), including -OSSO, -OSSO, and -OSSO. For all these isomers, we calculated geometric parameters, fragmentation energies, and simple and double ionization energies of the neutral species. Several structures are identified for the first time, especially for the ionic species. Computations show that in addition to -OSSO and -OSSO proposed for the absorption in the near-UV spectrum of the Venusian atmosphere other SO, SO, and SO species may contribute. Moreover, the characterization of the stability of singly and doubly charged SO entities can also be used for their identification by mass spectrometry and UV spectroscopy in the laboratory or in planetary atmospheres. In sum, the quest for the main UV absorber in Venus' atmosphere is not over, since the physical chemistry of sulfur oxides in Venus' atmosphere is far from being understood.

摘要

我们采用耦合簇水平((R)CCSD(T))及其显式相关版本((R)CCSD(T)-F12)的精确方法,来研究[SO]体系及其一些阳离子和双阳离子稳定异构体的电子结构、相对稳定性和光谱,特别关注可能存在于地球和行星大气中的最相关异构体。这项工作识别出了几种稳定异构体(10种中性、8种阳离子和5种双阳离子),包括 -OSSO、-OSSO 和 -OSSO。对于所有这些异构体,我们计算了中性物种的几何参数、裂解能以及单电离能和双电离能。首次识别出了几种结构,特别是离子物种的结构。计算表明,除了为金星大气近紫外光谱吸收所提出的 -OSSO 和 -OSSO 外,其他的 SO、SO 和 SO 物种也可能有贡献。此外,单电荷和双电荷 SO 实体稳定性的表征也可用于在实验室或行星大气中通过质谱和紫外光谱对它们进行识别。总之,对金星大气中主要紫外吸收体的探寻尚未结束,因为金星大气中硫氧化物的物理化学性质远未被理解。

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