Stability properties of CO22

H. Hogreve
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引用次数: 19

Abstract

The carbon dioxide molecular dication is investigated by multireference configuration interaction computations. Whereas the system is found to be unbound by De=-5.12 eV with respect to fragmentation into CO+(2 Sigma +)+O+(4Su), the ground-state potential energy surface of CO22+ enjoys a local minimum for a collinear symmetric configuration where the carbon nucleus is centred between the outer two oxygen nuclei (with internuclear separation RC-O=1.22 AA). Potential barriers larger than 1 eV render the corresponding electronic ground state 3 Sigma g- metastable against dissociative tunnelling. For the lowest seven excited states and system configurations restricted to linear symmetric geometries, potential energy curves are presented and compared with the experimental double ionization spectrum of CO2 in the Franck-Condon region.
CO22的稳定性
采用多参考位相相互作用计算方法研究了二氧化碳的分子构型。虽然系统被发现在De=-5.12 eV的情况下分裂成CO+(2 Sigma +)+O+(4Su),但CO22+的基态势能表面在共线对称构型中具有局部最小值,其中碳核位于外两个氧核之间(核间分离RC-O=1.22 AA)。大于1ev的势垒使得相应的电子基态为3sigma g-亚稳,不受解离隧穿的影响。对于最低7个激发态和系统构型限制为线性对称几何,给出了势能曲线,并与CO2在frank - condon区域的实验双电离谱进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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