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Ab initio quantum-chemical computations of the electronic states in HgBr2 and IBr: Molecules of interest on the Earth's atmosphere

机译:HgBr2和IBr中电子态的从头算量子化学计算:地球大气中感兴趣的分子

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摘要

The electronic states of atmospheric relevant molecules IBr and HgBr2 are reported, within the UV-Vis spectrum range (170 nm <= lambda(photon) <= 600 nm) by means of the complete-active-space self-consistent field/multi-state complete-active-space second-order perturbation theory/spin-orbit restricted-active-space state-interaction (CASSCF/MS-CASPT2/SO-RASSI) quantum-chemical approach and atomic-natural-orbital relativistic-correlation-consistent (ANO-RCC) basis sets. Several analyses of the methodology were carried out in order to reach converged results and therefore to establish a highly accurate level of theory. Good agreement is found with the experimental data with errors not higher than around 0.1 eV. The presented analyses shall allow upcoming studies aimed to accurately determine the absorption cross sections of interhalogen molecules and compounds with Hg that are relevant to better comprehend the photochemical processes taking place in the atmosphere. Published by AIP Publishing.
机译:报告了大气相关分子IBr和HgBr2的电子态,该光谱通过完整的活性空间自洽场/多光谱仪在UV-Vis光谱范围内(170 nm <=λ(光子)<= 600 nm)状态完全活动空间二阶扰动理论/自旋轨道受限活动空间状态相互作用(CASSCF / MS-CASPT2 / SO-RASSI)量子化学方法和原子自然轨道相对论相关一致( ANO-RCC)基础集。为了获得一致的结果,对方法论进行了多次分析,从而建立了一个高度准确的理论体系。发现与实验数据有很好的一致性,误差不大于0.1 eV。提出的分析应允许进行即将开展的旨在准确确定卤素间分子和Hg化合物吸收截面的研究,这些吸收截面与更好地理解大气中发生的光化学过程有关。由AIP Publishing发布。

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