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首页> 外文期刊>ACS nano >Spin filtering and magneto-resistive effect at the graphene/h-BN ribbon interface
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Spin filtering and magneto-resistive effect at the graphene/h-BN ribbon interface

机译:石墨烯/ h-BN带状界面处的自旋滤波和磁阻效应

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摘要

Advances in the realization of hybrid graphene/h-BN materials open new ways to control the electronic properties of graphene nanostructures. In this paper, the structural, electronic, and transport properties of heterojunctions made of bare zigzag-shaped h-BN and graphene ribbons are investigated using first-principles techniques. Our results highlight the potential of graphene/h-BN junctions for applications in spintronic devices. At first, density functional theory is used to detail the role played by the edge states and dangling bonds in the electronic and magnetic behavior of h-BN and graphene ribbons. Then, the electronic conductance of the junction is computed in the framework of Green's function-based scattering theory. In its high-spin configuration, the junction reveals a full spin polarization of the propagating carriers around the Fermi energy, and the magnitude of the transmission probability is predicted to be strongly dependent on the relative orientation of magnetic momenta in the leads.
机译:杂化石墨烯/ h-BN材料的实现进展为控制石墨烯纳米结构的电子性能开辟了新途径。在本文中,使用第一性原理技术研究了由锯齿形的h-BN和石墨烯带制成的异质结的结构,电子和输运性质。我们的结果凸显了石墨烯/ h-BN结在自旋电子器件中的应用潜力。首先,使用密度泛函理论来详细说明边缘态和悬空键在h-BN和石墨烯带的电子和磁性行为中所起的作用。然后,在基于格林函数的散射理论框架内计算结的电子电导。在其高自旋配置中,该结揭示了费米能量附近传播的载流子的完全自旋极化,并且传输概率的大小预计将强烈依赖于引线中磁矩的相对方向。

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