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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >First-principles study on electronic and magnetic properties of MnO3 superhalogen cluster-doped bilayer graphene
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First-principles study on electronic and magnetic properties of MnO3 superhalogen cluster-doped bilayer graphene

机译:MnO3超级卤素团簇掺杂双层石墨烯的电子和磁性的第一性原理研究

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摘要

Stability and magnetism of MnO3 superhalogen clusters embedded in bilayer graphene are investigated on the basis of first-principles calculations. MnO3-doped bilayer structures exhibit negative formation energies; by comparison, MnO3 embedded in monolayer graphene shows higher negative formation energy. Compared to MnO3-doped monolayer graphene MnO3-doped bilayer structures have higher structural stability due to higher binding energies. The charge from the lower graphene layer by MnO3 clusters then transfers to the upper layer graphene. The significant p-d hybridization between C and O atoms in graphene and Mn atoms leads to the exchange interaction causing the spin polarization of bilayer graphene. The MnO3 doped structures exhibit a half-metal nature with potential applications for spin field effect transistors (spin-FETs).
机译:在第一性原理计算的基础上,研究了嵌入双层石墨烯中的MnO3超级卤素团簇的稳定性和磁性。 MnO3掺杂的双层结构显示出负的形成能。相比之下,单层石墨烯中嵌入的MnO3具有更高的负形成能。与MnO3掺杂的单层石墨烯相比,MnO3掺杂的双层结构由于具有更高的结合能而具有更高的结构稳定性。然后,由MnO3簇从下层石墨烯层转移的电荷转移到上层石墨烯。石墨烯和Mn原子中C和O原子之间的显着p-d杂化导致交换相互作用,从而引起双层石墨烯的自旋极化。 MnO3掺杂的结构具有半金属性质,可用于自旋场效应晶体管(spin-FET)。

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