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一种星状异核 Cr(III)Mn(II)3 物种及其精确的电子和磁结构:通过 X 射线光谱、磁性和理论方法研究的自旋阻挫。

A star-shaped heteronuclear Cr(III)Mn(II)3 species and its precise electronic and magnetic structure: spin frustration studied by X-ray spectroscopic, magnetic, and theoretical methods.

机构信息

University of Osnabrück, Department of Physics, Barbarastrasse 7, D-49069 Osnabrück, Germany.

出版信息

Inorg Chem. 2010 Mar 1;49(5):2093-102. doi: 10.1021/ic9012119.

DOI:10.1021/ic9012119
PMID:20108916
Abstract

Molecular magnets incorporate transition-metal ions with organic groups providing a bridge to mediate magnetic exchange interactions between the ions. Among them are star-shaped molecules in which antiferromagnetic couplings between the central and peripheral atoms are predominantly present. Those configurations lead to an appreciable spin moment in the nonfrustrated ground state. In spite of its topologically simple magnetic structure, the [Cr(III)Mn(II)(3) (PyA)(6)Cl(3)] (CrMn(3)) molecule, in which PyA represents the monoanion of syn-pyridine-2-aldoxime, exhibits nontrivial magnetic properties, which emerge from the combined action of single-ion anisotropy and frustration. In the present work, we elucidate the underlying electronic and magnetic properties of the heteronuclear, spin-frustrated CrMn(3) molecule by applying X-ray magnetic circular dichroism (XMCD), as well as magnetization measurements in high magnetic fields, density functional theory, and ligand-field multiplet calculations. Quantum-model calculations based on a Heisenberg Hamiltonian augmented with local anisotropic terms enable us not only to improve the accuracy of the exchange interactions but also to determine the dominant local anisotropies. A discussion of the various spin Hamiltonian parameters not only leads to a validation of our element selective transition metal L edge XMCD spin moments at a magnetic field of 5 T and a temperature of 5 K but also allows us to monitor an interesting effect of anisotropy and frustration of the manganese and chromium ions.

摘要

分子磁体包含过渡金属离子和有机基团,提供了介导离子间磁交换相互作用的桥梁。其中包括星型分子,其中中央和外围原子之间存在反铁磁耦合。这些构型导致在非受挫基态中出现可观的自旋矩。尽管其拓扑结构简单,但[Cr(III)Mn(II)(3)(PyA)(6)Cl(3)](CrMn(3))分子,其中 PyA 代表顺式吡啶-2-醛肟的单阴离子,表现出非平凡的磁性质,这是由单离子各向异性和受挫的共同作用产生的。在本工作中,我们通过应用 X 射线磁圆二色性(XMCD)以及在高磁场中进行的磁化率测量、密度泛函理论和配体场多谱线计算,阐明了异核、自旋受挫的 CrMn(3)分子的基本电子和磁性质。基于海森堡哈密顿量加上局部各向异性项的量子模型计算不仅能够提高交换相互作用的准确性,还能够确定主要的局部各向异性。对各种自旋哈密顿参数的讨论不仅导致了我们在磁场为 5 T 和温度为 5 K 时对元素选择性过渡金属 L 边 XMCD 自旋矩的验证,而且还允许我们监测锰和铬离子的各向异性和受挫的有趣影响。

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