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Electronic and magnetic properties of doped black phosphorene with concentration dependence

机译:浓度依赖性掺杂黑色磷的电子和磁性

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摘要

In this paper, we employed first-principles calculations and chose Si and S atoms as impurities to explore the concentration-dependence of electronic structure and magnetism of doped phosphorene. It is found that the stability of doped phosphorene improves continuously with increasing the supercell size and decreasing impurity concentration due to the reduction of deformation. The stability of pristine phosphorene is invariable. The band structures of Si- and S-doped phosphorene without spin polarization always show metallic states suggesting the bandgap is insensitive to the in-plane size of the supercell and the dopant content. However, the results are fairly different once the spin polarization is taken into account. The band structures of Si- and S-doped phosphorene become those of a semimetal or a semiconductor as the in-plane size of the supercell goes up to 4 × 4 × 1 or 5 × 5 × 1 and the concentration goes down to 1.56% or 1%, respectively. In addition, we also observe that all Si- and S-doped phosphorene are magnetic, except for the Si-doped phosphorene with 2 × 2 × 1 supercell and a dopant content of 6.25%. The magnetic moment induced by 3p orbit–spin splitting increases with the in-plane size of the supercell, and the largest magnetic moment can be found in 4 × 4 × 1 and 5 × 5 × 1 supercells. These findings offer an alternative method to tune the magnetism and electronic structure of black phosphorene, which might be beneficial for its application in future spintronic devices.
机译:在本文中,我们采用第一性原理计算并选择了Si和S原子作为杂质来研究掺杂磷的电子结构和磁性的浓度依赖性。发现随着变形的减少,随着晶格尺寸的增加和杂质浓度的降低,掺杂磷的稳定性不断提高。原始磷烯的稳定性是不变的。没有自旋极化的Si和S掺杂的磷的能带结构始终显示金属态,这表明带隙对超级电池的面内尺寸和掺杂剂含量不敏感。但是,一旦考虑了自旋极化,结果就会大不相同。随着超级电池的面内尺寸增大到4×4×1或5×5×1且浓度下降到1.56%,Si和S掺杂的磷的带结构变成半金属或半导体的带结构。或1%。此外,我们还观察到,除了具有2×2×1超级电池和6.25%掺杂剂含量的Si掺杂磷光体以外,所有Si和S掺杂的磷光体都是磁性的。 3p轨道-自旋分裂引起的磁矩随超级电池的面内尺寸增加而增加,最大磁矩可在4×4×1和5×5×1个超级电池中找到。这些发现为调谐黑色磷的磁性和电子结构提供了另一种方法,这可能对其在未来的自旋电子器件中的应用有益。

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