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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Electron spin dynamics in vertical magnetic junctions incorporating two-dimensional layered materials
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Electron spin dynamics in vertical magnetic junctions incorporating two-dimensional layered materials

机译:电子旋转动力学在垂直磁交叉插入二维层状材料

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摘要

Graphene and related two dimensional (2D) materials (transition metal dichalcogenides (TMDCs), hexagonal boron nitride) and their hybrid systems have recently been emerged as promising candidates for spintronic applications. Here, we review the spin valve effect in vertical magnetic junctions incorporating semi-metallic graphene, semiconducting TMDCs (MoS2 and WS2), an insulating hexagonal boron nitride (hBN) and various other combinations of these layers. The number of intervening layers, the fabrication process, the quality of the interlayer, the role of different interlayers and their hybrid systems are reviewed for modifying the magnetotransport properties in these magnetic junctions. Also, the spin valve effect in graphene-hBN and graphene-Al2O3 heterostructured devices is particularly discussed to address the polarity of magnetoresistance. To determine whether 2D material-magnetic junctions are ohmic, the current-voltage (I-V) characteristics and temperature dependence of the junction resistance are briefly investigated for various junctions.
机译:石墨烯和相关二维(2D)材料(过渡金属二甲基甲基化物(TMDC),六边形氮化硼)及其杂种系统最近被出现为用于旋转式应用的承诺候选者。这里,我们审查了垂直磁性交叉处的旋转阀效应,其包含半金属石墨烯,半导体TMDCS(MOS2和WS2),绝缘六边形氮化硼(HBN)和这些层的各种其他组合。介绍中间层,制造过程,中间层的质量,不同中间层的作用及其混合系统的数量,用于修改这些磁性连接中的磁输出特性。而且,特别讨论了石墨烯-HBN和石墨烯-Al2O3异质装置中的旋转阀效应以解决磁阻的极性。为了确定2D材料 - 磁性连接是否为欧姆,对于各种连接,简要研究了结电流(I-V)的电流(I-V)特性和结抗性的温度依赖性。

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