Alharzali Nissrin, Rodríguez-Segundo Raúl, Prosmiti Rita
Institute of Fundamental Physics (IFF-CSIC), CSIC, Serrano 123, 28006 Madrid, Spain.
Phys Chem Chem Phys. 2021 Apr 7;23(13):7849-7859. doi: 10.1039/d0cp05406b. Epub 2020 Nov 21.
We report the results of a detailed theoretical investigation of small K-doped He clusters. The structural characteristics and stabilities of such cations are determined from ab initio electronic structure calculations at the MRCI+Q level of theory. The underlying interactions show a multireference character and such effects are analyzed. The interaction potentials are constructed employing an interpolation technique within the inverse problem theory method, while the nuclear quantum effects are computed for the trimers, their spatial arrangements are discussed, and information was extracted on the orientational anisotropy of the forces. We found that energetically the most stable conformer corresponds to linear arrangements that are taking place under large amplitude vibrations, with high zero-point energy. We have further looked into the behavior of higher-order species with various He atoms surrounding the cationic dopant. By using a sum of potentials approach and an evolutionary programming method, we analyzed the structural stability of clusters with up to six He atoms in comparison with interactions energies obtained from MRCI+Q quantum chemistry computations. Structures containing He motifs that characterize pure rare gas clusters, appear for the larger K-doped He clusters, showing selective growth during the microsolvation process of the alkali-dimer cation surrounded by He atoms. Such results indicate the existence of local solvation microstructures in these aggregates, where the cationic impurity could get trapped for a short time, contributing to the slow ionic mobility observed experimentally in ultra-cold He-droplets.
我们报告了对小尺寸钾掺杂氦团簇进行详细理论研究的结果。此类阳离子的结构特征和稳定性是通过在MRCI + Q理论水平上的从头算电子结构计算确定的。分析了潜在的相互作用所呈现的多参考特征。利用逆问题理论方法中的插值技术构建相互作用势,同时计算三聚体的核量子效应,讨论它们的空间排列,并提取有关力的取向各向异性的信息。我们发现,在能量上最稳定的构象异构体对应于在大振幅振动下发生的线性排列,具有较高的零点能。我们进一步研究了阳离子掺杂剂周围有各种氦原子的高阶物种的行为。通过使用势之和方法和进化编程方法,我们分析了与通过MRCI + Q量子化学计算获得的相互作用能相比,含有多达六个氦原子的团簇的结构稳定性。对于较大的钾掺杂氦团簇,出现了含有表征纯稀有气体团簇的氦基序的结构,这表明在被氦原子包围的碱二聚体阳离子的微溶剂化过程中存在选择性生长。这些结果表明在这些聚集体中存在局部溶剂化微结构,阳离子杂质可能在其中短暂被困,这有助于解释在超冷氦滴中实验观察到的缓慢离子迁移率。