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Electronic Structure and Chemical Bonding of AmO2(H2O)n2+/1+

机译:AmO2(H2O)n 2 + / 1 +的电子结构和化学键

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摘要

Systematic americyl-hydration cations were investigated theoretically to understand the electronic structures and bonding in [(AmO2)(H2O)n]2+/1+ (n = 1–6). We obtained the binding energy using density functional theory methods with scalar relativistic and spin–orbit coupling effects. The geometric structures of these species have been investigated in aqueous solution via an implicit solvation model. Computational results reveal that the complexes of five equatorial water molecules coordinated to americyl ions are the most stable due to the enhanced ionic interactions between the AmO22+/1+ cation and multiple oxygen atoms as electron donors. As expected, Am–Owater bonds in such series are electrostatic in nature and contain a generally decreasing covalent character when hydration number increases.
机译:从理论上研究了系统的a基水合阳离子,以了解[(AmO2)(H2O)n] sup> 2 + / 1 + (n = 1-6)中的电子结构和键合。我们使用具有标量相对论和自旋轨道耦合效应的密度泛函理论方法获得了结合能。通过隐式溶剂化模型研究了这些物种的几何结构。计算结果表明,由于AmO2 2 + / 1 + 阳离子与作为电子供体的多个氧原子之间的离子相互作用增强,五个与赤道离子配位的赤道水分子的配合物最稳定。不出所料,这种系列的Am–Owater键本质上是静电的,当水合数增加时,其共价键通常会降低。

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