首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Effect of metal-ligand bond lengths on superexchange interactions in Jahn-Teller d(4) ion systems: Spin dimer analysis of the magnetic structure of marokite CaMn2O4
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Effect of metal-ligand bond lengths on superexchange interactions in Jahn-Teller d(4) ion systems: Spin dimer analysis of the magnetic structure of marokite CaMn2O4

机译:在Jahn-Teller d(4)离子系统中,金属-配体键长对超交换相互作用的影响:钙锰矿CaMn2O4磁性结构的自旋二聚体分析

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摘要

In marokite CaMn2O4, all six Mn-O bonds of each MnO6 octahedron are different because of the Jahn-Teller distortion so that every Mn3+ (d(4)) ion has six different superexchange interactions with its neighboring Mn3+ ions. The spin exchange interactions of CaMn2O4 were examined on the basis of spin dimer analysis to find what geometrical parameters of the Mn-O-Mn superexchange paths control the signs and strengths of their spin exchange interactions. Our work correctly describes the magnetic structure of CaMn2O4 observed from neutron powder diffraction measurements and shows that the antiferromagnetic interactions of the Mn-O-Mn paths depend primarily on the asymmetry and the Mn-O bond length of the Mn-O-Mn bridge, but not on the ZMn-O-Mn bond angle. [References: 26]
机译:在Marokite CaMn2O4中,由于Jahn-Teller畸变,每个MnO6八面体的所有六个Mn-O键都不同,因此每个Mn3 +(d(4))离子与其相邻的Mn3 +离子都有六种不同的超交换相互作用。在自旋二聚体分析的基础上检查了CaMn2O4的自旋交换相互作用,以发现Mn-O-Mn超交换路径的哪些几何参数控制了它们的自旋交换相互作用的迹象和强度。我们的工作正确描述了从中子粉末衍射测量中观察到的CaMn2O4的磁性结构,并表明Mn-O-Mn路径的反铁磁相互作用主要取决于Mn-O-Mn桥的不对称性和Mn-O键长,但不在ZMn-O-Mn键角上。 [参考:26]

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