Federal University of São João del Rei, Campus Centro Oeste Dona Lindu (CCO/UFSJ), 35501-296, Divinópolis, MG, Brazil.
Programa de Pós-Graduação em Química (PPGQ), Universidade Federal do Pará, Belém, 66075-110, Brazil.
Phys Chem Chem Phys. 2022 Dec 21;25(1):633-645. doi: 10.1039/d2cp04456k.
This work presents a study involving dimers composed of He, Ne, Ar, Kr, Xe, Rn, and Og noble gases with oganesson, a super-heavy closed-shell element ( = 118). He-Og, Ne-Og, Ar-Og, Kr-Og, Xe-Og, Rn-Og, and Og-Og ground state electronic potential energy curves were calculated based on the 4-component (4c) Dirac-Coulomb Hamiltonian and were counterpoise corrected. For the 4c calculations, the electron correlation was taken into account using the same methodology (MP2-srLDA) and basis set quality (Dyall's acv3z and Dunning's aug-cc-PVTZ). All calculations included quantum electrodynamics effects at the Gaunt interaction level. For all the aforementioned dimers the vibration energies, spectroscopic constants (, , , , and ), and lifetime as a function of the temperature (which ranged from 200 to 500 K) were also calculated. The obtained results suggest that the inclusion of quantum electrodynamics effects reduces the value of the dissociation energy of all hetero-nuclear molecules with a percentage contribution ranging from 0.48% (for the He-Og dimer) to 9.63% (for the Rn-Og dimer). The lifetime calculations indicate that the Og-He dimer is close to the edge of instability and that Ng-Og dimers are relatively less stable when the Gaunt correction is considered. Exploiting scaling laws that adopt the polarizability of involved partners as scaling factors, it has also been demonstrated that in such systems the interaction is of van der Waals nature (size repulsion plus dispersion attraction) and this permitted an estimation of dissociation energy and equilibrium distance in the Og-Og dimer. This further information has been exploited to evaluate the rovibrational levels in this symmetric dimer and to cast light on the macroscopic properties of condensed phases concerning the complete noble gas family, emphasizing some anomalies of Og.
这项工作涉及由氦、氖、氩、氪、氙、氡和Og 等稀有气体与超重闭壳元素( = 118)组成的二聚体。基于四分量(4c)狄拉克-库仑哈密顿量并进行了平衡校正,计算了 He-Og、Ne-Og、Ar-Og、Kr-Og、Xe-Og、Rn-Og 和 Og-Og 基态电子势能曲线。对于 4c 计算,使用相同的方法(MP2-srLDA)和基组质量(Dyall 的 acv3z 和 Dunning 的 aug-cc-PVTZ)考虑了电子相关。所有计算都包括在 Gaunt 相互作用水平上的量子电动力学效应。对于所有上述二聚体,还计算了振动能、光谱常数(、、、和)以及作为温度函数的寿命(范围从 200 到 500 K)。所得结果表明,包含量子电动力学效应会降低所有异核分子的离解能值,其百分比贡献范围从 0.48%(对于 He-Og 二聚体)到 9.63%(对于 Rn-Og 二聚体)。寿命计算表明,当考虑 Gaunt 修正时,Og-He 二聚体接近不稳定性边缘,而 Ng-Og 二聚体相对不稳定。利用采用所涉及伙伴的极化率作为缩放因子的缩放定律,还表明在这些系统中,相互作用具有范德华性质(尺寸排斥加色散吸引),这允许估计 Og-Og 二聚体的离解能和平衡距离。进一步的信息被用来评估这个对称二聚体的转动振动能级,并阐明关于完整的稀有气体家族的凝聚相的宏观性质,强调了 Og 的一些异常。