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Ab initio studies of atomic properties and experimental behavior of element 119 and its lighter homologs

机译:从头开始研究119元素及其较轻同系物的原子特性和实验行为

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Static dipole polarizabilities of element 119 and its singly charged cation are calculated, along with those of its lighter homologs, Cs and Fr. Relativity is treated within the 4-component Dirac-Coulomb formalism and electron correlation is included by the single reference coupled cluster approach with single, double, and perturbative triple excitations (CCSD(T)). Very good agreement with available experimental values is obtained for Cs, lending credence to the predictions for Fr and element 119. The atomic properties in group-1 are largely determined by the valence ns orbital, which experiences relativistic stabilization and contraction in the heavier elements. As a result, element 119 is predicted to have a relatively low polarizability (169.7 a.u.), comparable to that of Na. The adsorption enthalpy of element 119 on Teflon, which is important for possible future experimental studies of this element, is estimated as 17.6 kJ/mol, the lowest among the atoms considered here.
机译:计算出元件119及其单电荷阳离子的静态偶极极化率,以及其较轻的同系物Cs和Fr。相对论在4分量Dirac-Coulomb形式主义中进行了处理,并且具有单,双和微扰三重激发(CCSD(T))的单参考耦合簇方法包括电子相关性。对于Cs,获得了与可用实验值的非常好的一致性,这有助于对Fr和119元素的预测。第1组的原子性质主要由价ns轨道决定,其在较重的元素中经历相对论性的稳定和收缩。结果,预计元素119具有与Na相当的较低的极化率(169.7a.u.)。元素119在聚四氟乙烯上的吸附焓对于该元素将来可能的实验研究很重要,据估计为17.6 kJ / mol,在此处考虑的原子中最低。

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