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若干环形结构的键合和磁响应特性。从相对论密度泛函理论计算中了解 Ni2S2 作为构筑基块的作用。

Bonding and magnetic response properties of several toroid structures. Insights of the role of Ni2S2 as a building block from relativistic density functional theory calculations.

机构信息

Relativistic Molecular Physics (ReMoPh) group, Universidad Andres Bello, Republica 275, Santiago, Chile.

出版信息

J Phys Chem A. 2011 Oct 6;115(39):10789-94. doi: 10.1021/jp2028438. Epub 2011 Sep 15.

Abstract

Relativistic density functional calculations were carried out on several nickel toroid mercaptides of the general formula Ni(μ-SR)(2), with the aim to characterize and analyze their stability and magnetic response properties, in order to gain more insights into their stabilization and size-dependent behavior. The Ni-ligand interaction has been studied by means projected density of states and energy decomposition analysis, which denotes its stabilizing character. The graphical representation of the response to an external magnetic field is applied for the very first time taking into account the spin-orbit term. This map allows one to clearly characterize the magnetic behavior inside and in the closeness of the toroid structure showing the prescence of paratropic ring currents inside the Ni(n) ring, and by contrast, diatropic currents confined in each Ni(2)S(2) motif denoting an aromatic behavior (in terms of magnetic criteria). The calculated data suggests that the Ni(2)S(2) moiety can be regarded as a stable constructing block, which can afford several toroid structures of different nuclearities in agreement with that reported in the experimental literature. In addition, the effects of the relativistic treatment over the magnetic response properties on these lighter compounds are denoted by comparing nonrelativistic, scalar relativistic, and scalar plus spin-orbit relativistic treatments, showing their acting, although nonpronunced, role.

摘要

进行了相对论密度泛函计算,研究了几种镍环硫醇盐的一般公式 Ni(μ-SR)(2),目的是对其稳定性和磁响应特性进行表征和分析,以深入了解它们的稳定化和尺寸依赖性行为。通过投影态密度和能量分解分析研究了 Ni-配体相互作用,表明其具有稳定作用。首次应用考虑自旋轨道项的外部磁场响应的图形表示来研究。该图谱允许清楚地描述环结构内部和附近的磁行为,表明 Ni(n)环内存在反磁环电流,而相反,Ni(2)S(2)基元内的顺磁电流则表示芳香性(根据磁标准)。计算数据表明,Ni(2)S(2)部分可以被视为稳定的构建块,可以提供不同核性的多种环结构,与实验文献中报道的一致。此外,通过比较非相对论、标量相对论和标量加自旋轨道相对论处理,指出了相对论处理对这些较轻化合物磁响应特性的影响,表明它们虽然作用不明显,但却在起作用。

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