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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Spin-Dependent Transport and Optical Properties of Transparent Half-Metallic g-C4N3 Films
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Spin-Dependent Transport and Optical Properties of Transparent Half-Metallic g-C4N3 Films

机译:透明半金属g-C4N3薄膜的自旋相关输运和光学性质

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摘要

Half-metallic materials play an essential role in the spin-dependent transport study, and so far it is believed that the 3d transitional metal elements are necessary to obtain a ferromagnetic state. Herein, we demonstrate that the metal free two-dimensional graphitic carbon nitride (g-C4N3) film show half metallic state and this is independent of the film thickness and stacking order. We find that the half-metallicity results in a very large magnetoresistance even at finite bias. Moreover, we have also investigated various optical properties. The g-C4N3 thin films have a very high refractive index for parallel polarization and extremely weak reflectivity for perpendicular polarization. Additionally, the g-C4N3 thin films are optically transparent because of very weak absorption coefficients. Overall, our findings suggest that the transparent half-metallic g-C4N3 thin films can be used for both spintronics and optical applications because of potential multifunctionality.
机译:半金属材料在自旋依赖性输运研究中起着至关重要的作用,到目前为止,人们认为3d过渡金属元素对于获得铁磁态是必不可少的。在此,我们证明了不含金属的二维石墨氮化碳(g-C4N3)膜呈现半金属状态,这与膜厚和堆叠顺序无关。我们发现,即使在有限偏置下,半金属性也会导致很大的磁阻。此外,我们还研究了各种光学性质。 g-C4N3薄膜对于平行偏振具有很高的折射率,对于垂直偏振具有非常弱的反射率。另外,由于非常弱的吸收系数,g-C4N3薄膜是光学透明的。总体而言,我们的发现表明,由于潜在的多功能性,透明的半金属g-C4N3薄膜可用于自旋电子学和光学应用。

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