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Magnetoelectric effect in organic molecular solids

机译:在有机分子固体磁电效应

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摘要

The Magnetoelectric (ME) effect in solids is a prominent cross correlation phenomenon, in which the electric field (E) controls the magnetization (M) and the magnetic field (H) controls the electric polarization (P). A rich variety of ME effects and their potential in practical applications have been investigated so far within the transition-metal compounds. Here, we report a possible way to realize the ME effect in organic molecular solids, in which two molecules build a dimer unit aligned on a lattice site. The linear ME effect is predicted in a long-range ordered state of spins and electric dipoles, as well as in a disordered state. One key of the ME effect is a hidden ferroic order of the spin-charge composite object. We provide a new guiding principle of the ME effect in materials without transition-metal elements, which may lead to flexible and lightweight multifunctional materials.
机译:固体中的磁电(ME)效应是突出的互相关现象,其中电场(E)控制磁化(M)和磁场(H)控制电极极化(P)。到目前为止在过渡金属化合物内研究了丰富的ME效果及其在实际应用中的潜力。在此,我们报告了实现了在有机分子固体中实现ME效应的可能方法,其中两个分子在晶格部位上构建一二聚体单元。线性ME效果预测到长距离有序状态的旋转和电偶极子,以及在无序状态下。我的效果的一个键是旋转电荷复合物体的隐藏的铁序。我们在没有过渡金属元件的情况下提供了我在材料中的新引导原理,这可能导致灵活和轻质的多功能材料。

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