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Spin-polarized transport properties of a pyridinium-based molecular spintronics device

机译:基于吡啶基分子熔龙龙网装置的旋转偏振性能

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摘要

By applying a first-principles approach based on non-equilibrium Green's functions combined with density functional theory, the transport properties of a pyridinium-based "radical-pi-radical" molecular spintronics device are Investigated. The obvious negative differential resistance (NDR) and spin current polarization (SCP) effect, and abnormal magnetoresistance (MR) are obtained. Orbital reconstruction is responsible for novel transport properties such as that the MR increases with bias and then decreases and that the NDR being present for both parallel and antiparallel magnetization configurations, which may have future applications in the field of molecular spintronics. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过将基于非平衡绿色功能的第一原理方法与密度函数理论相结合,研究了吡啶基“自由基 - PI-自由基”分子闪奖装置的运输性质。 获得明显的负差分电阻(NDR)和旋转电流偏振(SCP)效应和异常磁阻(MR)。 轨道重建负责新的运输性质,例如MR偏压的增加,然后降低,并且对于平行和反平行的磁化配置存在的NDR,这可能在分子闪奖的领域中具有未来的应用。 (c)2018年elestvier b.v.保留所有权利。

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