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首页> 外文期刊>Chemistry: A European journal >Electrically Switchable Magnetic Molecules: Inducing a Magnetic Coupling by Means of an External Electric Field in a Mixed-Valence Polyoxovanadate Cluster
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Electrically Switchable Magnetic Molecules: Inducing a Magnetic Coupling by Means of an External Electric Field in a Mixed-Valence Polyoxovanadate Cluster

机译:电可开关的磁分子:通过外电场在混合价聚氧钒酸盐簇中诱导磁耦合。

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摘要

Herein we evaluate the influence of an electric field on the coupling of two delocalized electrons in the mixed-valence polyoxometalate (POM) [GeV14O40](8-) (in short V-14) by using both a t-J model Hamiltonian and DFT calculations. In absence of an electric field the compound is paramagnetic, because the two electrons are localized on different parts of the POM. When an electric field is applied, an abrupt change of the magnetic coupling between the two delocalized electrons can be induced. Indeed, the field forces the two electrons to localize on nearest-neighbors metal centers, leading to a very strong antiferromagnetic coupling. Both theoretical approaches have led to similar results, emphasizing that the sharp spin transition induced by the electric field in the V-14 system is a robust phenomenon, intramolecular in nature, and barely influenced by small changes on the external structure.
机译:本文中,我们通过使用t-J模型哈密顿量和DFT计算来评估电场对混合价多金属氧酸盐(POM)[GeV14O40](8-)(简称V-14)中两个离域电子的耦合的影响。在没有电场的情况下,该化合物是顺磁性的,因为这两个电子位于POM的不同部分。当施加电场时,可以引起两个离域电子之间的磁耦合的突然变化。实际上,电场迫使两个电子位于最近的金属中心,从而导致非常强的反铁磁耦合。两种理论方法均得出相似的结果,强调由V-14系统中的电场引起的急剧自旋跃迁是一种鲁棒现象,本质上是分子内的,几乎不受外部结构的微小变化的影响。

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