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首页> 外文期刊>RSC Advances >Actinide elements and germanium: a first-principles density functional theory investigation of the electronic and magnetic properties of ApGe (Ap = Ac-Lr) diatoms
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Actinide elements and germanium: a first-principles density functional theory investigation of the electronic and magnetic properties of ApGe (Ap = Ac-Lr) diatoms

机译:in系元素和锗:ApGe(Ap = Ac-Lr)硅藻的电子和磁性的第一原理密度泛函理论研究

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摘要

The geometry and electronic and magnetic properties of ApGe (Ap = Ac-Lr) diatoms have been studied using first-principles density functional theory, with relativistic effects being taken into account. The calculated natural populations of ApGe diatoms show that the electronic charge is transferred mainly from Ap to Ge, most of the Ap 5f subshell in ApGe being inert and not involved in chemical bonding. The calculated highest occupied molecular orbital-lowest unoccupied molecular orbital (HOMO-LUMO) gaps of the ApGe diatoms exhibit an oscillating behavior from AcGe to BkGe, and a slight increase from CfGe to NoGe. The calculated magnetic moments of ApGe show that the total magnetic moment depends mainly on the 5f electrons of Ap in the ApGe diatoms, which generate the magnetic properties. Our calculated results are in good agreement with the published theoretical and experimental data.
机译:使用第一性原理密度泛函理论研究了ApGe(Ap = Ac-Lr)硅藻的几何形状和电子,磁性,并考虑了相对论效应。计算得出的ApGe硅藻的自然种群表明,电荷主要从Ap转移到Ge,ApGe中的大多数Ap 5f亚壳是惰性的,不参与化学键合。计算得出的ApGe硅藻的最高占据分子轨道-最低未占据分子轨道(HOMO-LUMO)间隙显示出从AcGe到BkGe的振荡行为,并且从CfGe到NoGe略有增加。计算得出的ApGe磁矩表明,总磁矩主要取决于ApGe硅藻中Ap的5f电子,从而产生了磁性。我们的计算结果与已发表的理论和实验数据非常吻合。

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