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The half-metallicity and the spin filtering, NDR and spin Seebeck effects in 2D Ag-doped SnSe2 monolayer

机译:半金属性和自旋过滤,NDR和旋转塞贝克效应2D Ag掺杂的SnSe2单层

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Two-dimensional SnSe2 has become more and more attractive due to the excellent electronic, optoelectronic, and thermoelectric properties. However, the study on magnetic properties is rare. Inspired by the recent experimental synthesis of SnSe2 monolayer and Ag-doped SnSe2 thin films, we use the first-principles calculations combined with the nonequilibrium Green's function method to investigate the structural, electronic, magnetic, and spin transport properties of an Ag-doped SnSe2 monolayer. It is found that the doped system exhibits half-metallic ferromagnetism with the energy gap of about 0.5 eV in the spin-down channel. The spin-polarized transport properties based on Ag-doped SnSe2 monolayers show an excellent spin filtering effect and a negative differential resistance effect under a bias voltage. Interestingly, under a temperature gradient, the spin Seebeck effect and the temperature-controlled reverse of spin polarization are also observed. These perfect spin transport properties can be understood from the calculated spin-polarized band structure and the spin-polarized transport spectrum. These studies indicate the potential spintronic and spin caloritronic applications for Ag-doped SnSe2 monolayer.
机译:由于优异的电子,光电和热电性能,二维SNSE2变得越来越有吸引力。然而,对磁性的研究是罕见的。受到最近的SNSE2单层和Ag掺杂的SnSe2薄膜的实验合成的启发,我们使用第一原理计算与非QuiLibium的功能方法相结合,研究了AG掺杂的SNSE2的结构,电子,磁性和旋转性能单层。发现掺杂的系统具有半金属铁磁在旋转通道中的能隙为约0.5eV的能隙。基于掺杂Ag的SnSe2单层自旋极化输运特性显示出优异的自旋滤波效果和偏置电压下的负微分电阻的效果。有趣的是,在温度梯度下,还观察到旋扎效应和自旋极化的温度控制的逆转。可以从计算出的旋转偏振带结构和自旋偏振传输谱可以理解这些完美的自旋运输特性。这些研究表明,用于Ag掺杂的SnSe2单层的潜在的旋转型和旋转升压件应用。

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