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Magneto-mechanical coupling behavior of defective single-walled carbon nanotubes

机译:有缺陷的单壁碳纳米管的磁机械耦合行为

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摘要

Spin-polarized density functional theory is employed to investigate the mechanical and magnetic properties of a (5, 5) carbon nanotube (CN) with a mono-vacancy. It is found that the magnetic properties of a defective CN can be modified by applied uniaxial tensile strain. The effects of uniaxial strains on the magnetic properties are related to the stretched bonds in the defective CN, and the effect of a mixture of sp(2) and sp(3) hybridization on the magnetism is investigated. Furthermore, because of the strong magneto-mechanical coupling between the defective CN and metal, the mechanical properties of the defective (5, 5) CN are found to be significantly alternated by the substitution of metal atoms to its vacancy sites. Such strong coupling among magnetic moment, spin-dependent transport, and mechanical deformation in a defective CN could be beneficial in some potential applications of CNs in spintronic devices and metal matrix composites.
机译:自旋极化密度泛函理论用于研究具有单空位的(5,5)碳纳米管(CN)的机械和磁性。已经发现,可以通过施加单轴拉伸应变来改变有缺陷的CN的磁性。单轴应变对磁性能的影响与缺陷CN中的拉伸键有关,并且研究了sp(2)和sp(3)混合的混合物对磁性的影响。此外,由于有缺陷的CN与金属之间的强磁-机械耦合,发现有缺陷的(5,5)CN的机械性能通过将金属原子替换为其空位而显着交替。缺陷CN中的磁矩,自旋相关输运和机械变形之间的这种强耦合可能有益于CN在自旋电子器件和金属基质复合材料中的某些潜在应用。

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