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Magnetoelectric coupling in the paramagnetic state of a metal-organic framework

机译:金属-有机骨架顺磁性状态下的磁电耦合

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摘要

Although the magnetoelectric effects - the mutual control of electric polarization by magnetic fields and magnetism by electric fields, have been intensively studied in a large number of inorganic compounds and heterostructures, they have been rarely observed in organic materials. Here we demonstrate magnetoelectric coupling in a metal-organic framework [(CH3)2NH2]Mn(HCOO)3 which exhibits an order-disorder type of ferroelectricity below 185 K. The magnetic susceptibility starts to deviate from the Curie-Weiss law at the paraelectric-ferroelectric transition temperature, suggesting an enhancement of short-range magnetic correlation in the ferroelectric state. Electron spin resonance study further confirms that the magnetic state indeed changes following the ferroelectric phase transition. Inversely, the ferroelectric polarization can be improved by applying high magnetic fields. We interpret the magnetoelectric coupling in the paramagnetic state in the metal-organic framework as a consequence of the magnetoelastic effect that modifies both the superexchange interaction and the hydrogen bonding.
机译:尽管已经在大量的无机化合物和异质结构中深入研究了磁电效应-磁场对极化的相互控制和电场对磁性的相互控制,但在有机材料中很少观察到它们。在这里,我们展示了在金属-有机骨架[(CH3)2NH2] Mn(HCOO)3中的磁电耦合,其在185 K以下表现出铁电的有序-无序类型。在顺电中磁化率开始偏离居里-魏斯定律-铁电转变温度,表明在铁电状态下短程磁相关性增强。电子自旋共振研究进一步证实,磁性状态确实在铁电相变之后发生变化。相反,可以通过施加强磁场来改善铁电极化。我们将金属-有机骨架中顺磁性状态下的磁电耦合解释为磁弹性效应的结果,该效应同时改变了超交换相互作用和氢键。

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