首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Exchange coupling and magnetic anisotropy of exchanged-biased quantum tunnelling single-molecule magnet Ni _3Mn_2 complexes using theoretical methods based on Density Functional Theory
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Exchange coupling and magnetic anisotropy of exchanged-biased quantum tunnelling single-molecule magnet Ni _3Mn_2 complexes using theoretical methods based on Density Functional Theory

机译:基于密度泛函理论的理论方法交换偏置量子隧穿单分子磁体Ni_3Mn_2配合物的交换耦合和磁各向异性

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摘要

The magnetic properties of a new family of single-molecule magnet Ni _3Mn_2 complexes were studied using theoretical methods based on Density Functional Theory (DFT). The first part of this study is devoted to analysing the exchange coupling constants, focusing on the intramolecular as well as the intermolecular interactions. The calculated intramolecular J values were in excellent agreement with the experimental data, which show that all the couplings are ferromagnetic, leading to an S = 7 ground state. The intermolecular interactions were investigated because the two complexes studied do not show tunnelling at zero magnetic field. Usually, this exchange-biased quantum tunnelling is attributed to the presence of intermolecular interactions calculated with the help of theoretical methods. The results indicate the presence of weak intermolecular antiferromagnetic couplings that cannot explain the ferromagnetic value found experimentally for one of the systems. In the second part, the goal is to analyse magnetic anisotropy through the calculation of the zero-field splitting parameters (D and E), using DFT methods including the spin-orbit effect.
机译:使用基于密度泛函理论(DFT)的理论方法研究了一个新的单分子磁体Ni _3Mn_2配合物家族的磁性。本研究的第一部分致力于分析交换耦合常数,重点关注分子内以及分子间的相互作用。计算出的分子内J值与实验数据非常吻合,表明所有耦合都是铁磁的,从而导致S = 7基态。研究了分子间的相互作用,因为所研究的两个络合物在零磁场下均未显示出隧道效应。通常,这种交换偏向的量子隧穿归因于借​​助理论方法计算出的分子间相互作用。结果表明存在弱分子间反铁磁耦合,不能解释实验发现的一种系统的铁磁值。在第二部分中,目标是使用包括自旋轨道效应的DFT方法,通过计算零场分裂参数(D和E)来分析磁各向异性。

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