首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Structures and Stabilities for Halides and Oxides of Transactinide Elements Rf, Db, and Sg Calculated by Relativistic Effective Core Potential Methods
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Structures and Stabilities for Halides and Oxides of Transactinide Elements Rf, Db, and Sg Calculated by Relativistic Effective Core Potential Methods

机译:相对论有效核心势方法计算的Trans系元素Rf,Db和Sg的卤化物和氧化物的结构和稳定性

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摘要

The ground states of the halides and oxides containing transactinide elements Rf (element 104), Db (element 105), and Sg (element 106) were calculated at the HF, MP2, QCISD, CCSD, and CCSD(T) levels of theory using one- and two-component relativistic effective core potentials. Spin-orbit effects are rather small for geometries, harmonic vibrational frequencies, charge distributions, overlap populations, and dipole moments, but considerable for atomization energies. Electron correlations are necessary for any accurate determination of the molecular properties, in particular for the evaluation of atomization energies. The bond lengths of Sg compounds are consistently longer than those of the corresponding W compounds by 0.04-0.06 A. The atomization energies for Sg compounds are slightly smaller than those for the corresponding W compounds due to spin-orbit and correlation effects. The differences tend to increase with the number of oxygen atoms in the compounds. Metal charges and dipole moments are larger for the Sg compounds than for the W compounds, implying that Sg is more ionic than W. The D_(3h) structures are calculated to be more stable by about 2 kcal/mol than the C_(4v) ones for TaCl_5, TaBr_5, DbCl_5, and DbBr_5.
机译:包含反act系元素Rf(元素104),Db(元素105)和Sg(元素106)的卤化物和氧化物的基态是使用以下理论值在HF,MP2,QCISD,CCSD和CCSD(T)上计算的:一成分和两成分相对论有效核心潜力。对于几何形状,谐波振动频率,电荷分布,重叠分布和偶极矩,自旋轨道的影响很小,但对于雾化能量而言却很可观。电子关联对于分子性质的任何精确测定都是必需的,特别是对于雾化能的评估。 Sg化合物的键长始终比相应W化合物的键长长0.04-0.06A。由于自旋轨道和相关效应,Sg化合物的雾化能略小于相应W化合物的雾化能。随着化合物中氧原子数目的增加,差异趋于增加。 Sg化合物的金属电荷和偶极矩比W化合物大,这意味着Sg比W更具离子性。D_(3h)结构经计算比C_(4v)稳定约2 kcal / mol。分别用于TaCl_5,TaBr_5,DbCl_5和DbBr_5。

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