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双原子分子和团簇加合物中的金-超重元素相互作用:四分量狄拉克-科恩-沙姆/电荷位移联合研究

Gold-superheavy-element interaction in diatomics and cluster adducts: A combined four-component Dirac-Kohn-Sham/charge-displacement study.

作者信息

Rampino Sergio, Storchi Loriano, Belpassi Leonardo

机构信息

Istituto di Scienze e Tecnologie Molecolari, Consiglio Nazionale delle Ricerche c/o Dipartimento di Chimica, Biologia e Biotecnologie, Università degli Studi di Perugia, Via Elce di Sotto 8, 06123 Perugia, Italy.

Dipartimento di Farmacia, Università degli Studi "G. D'Annunzio," Via dei Vestini 31, 66100 Chieti, Italy.

出版信息

J Chem Phys. 2015 Jul 14;143(2):024307. doi: 10.1063/1.4926533.

Abstract

The chemistry of superheavy elements (Z ≥ 104) is actively investigated in atom-at-a-time experiments of volatility through adsorption on gold surfaces. In this context, common guidelines for interpretation based on group trends in the periodic table should be used cautiously, because relativistic effects play a central role and may cause predictions to fall short. In this paper, we present an all-electron four-component Dirac-Kohn-Sham comparative study of the interaction of gold with Cn (Z = 112), Fl (Z = 114), and Uuo (Z = 118) versus their lighter homologues of the 6th period, Hg, Pb, and Rn plus the noble gas Xe. Calculations were carried out for Au-E (E = Hg, Cn, Pb, Fl, Xe, Rn, Uuo), Au7- and Au20-E (E = Hg, Cn, Pb, Fl, Rn) complexes, where Au7 (planar) and Au20 (pyramidal) are experimentally determined clusters having structures of increasing complexity. Results are analysed both in terms of the energetics of the complexes and of the electron charge rearrangement accompanying their formation. In line with the available experimental data, Cn and more markedly Fl are found to be less reactive than their lighter homologues. On the contrary, Uuo is found to be more reactive than Rn and Xe. Cn forms the weakest bond with the gold atom, compared to Fl and Uuo. The reactivity of Fl decreases with increasing gold-fragment size more rapidly than that of Cn and, as a consequence, the order of the reactivity of these two elements is inverted upon reaching the Au20-cluster adduct. Density difference maps between adducts and fragments reveal similarities in the behaviour of Cn and Xe, and in that of Uuo and the more reactive species Hg and Pb. These findings are given a quantitative ground via charge-displacement analysis.

摘要

超重元素(Z≥104)的化学性质正在通过在金表面吸附的单原子挥发性实验中进行积极研究。在此背景下,基于元素周期表中族趋势的常见解释指南应谨慎使用,因为相对论效应起着核心作用,可能导致预测不准确。在本文中,我们对金与Cn(Z = 112)、Fl(Z = 114)和Uuo(Z = 118)及其第六周期较轻同系物Hg、Pb和Rn以及稀有气体Xe的相互作用进行了全电子四分量狄拉克 - 科恩 - 沙姆比较研究。对Au - E(E = Hg、Cn、Pb、Fl、Xe、Rn、Uuo)、Au7 - 和Au20 - E(E = Hg、Cn、Pb、Fl、Rn)配合物进行了计算,其中Au7(平面)和Au20(金字塔形)是通过实验确定的结构越来越复杂的团簇。从配合物的能量学及其形成时伴随的电子电荷重排两方面对结果进行了分析。与现有实验数据一致,发现Cn以及更明显的Fl比其较轻的同系物反应性更低。相反,发现Uuo比Rn和Xe反应性更高。与Fl和Uuo相比,Cn与金原子形成的键最弱。Fl的反应性随金片段尺寸增加而下降的速度比Cn更快,因此,在形成Au20 - 团簇加合物时,这两种元素的反应性顺序发生了反转。加合物与片段之间的密度差图揭示了Cn和Xe行为的相似性,以及Uuo与反应性更高的物种Hg和Pb行为上的相似性。通过电荷位移分析为这些发现提供了定量依据。

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