首页> 外文期刊>The European physical journal, B. Condensed matter physics >Comparison of the structural, electronic and magnetic properties of Fe, Co and Ni nanowires encapsulated into silicon carbide nanotube
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Comparison of the structural, electronic and magnetic properties of Fe, Co and Ni nanowires encapsulated into silicon carbide nanotube

机译:封装在碳化硅纳米管中的Fe,Co和Ni纳米线的结构,电子和磁性性质的比较

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摘要

A similar optimized structure, i.e. a near square cross-section shape for outside nanotube and a relative rotation between nanowire and its outside nanotube, is obtained for the transition-metal M13 (M = Fe, Co, Ni) nanowires with the FCC structure encapsulated inside the armchair (8, 8) silicon carbide nanotube [M13@(8, 8)]. It is also found that the stabilities of M13 nanowires are enhanced by silicon carbide nanotube encapsulation. Although the spin polarization P of each hybrid system is slightly lowered with respect to the corresponding free-standing nanowire, the largest spin polarization value 71% of Co13@(8, 8) among the three hybrid systems suggests it could be utilized to construct efficient spin transport devices. As compared with the corresponding free-standing nanowire, the magnetic moments μ1 and μ2 for the peripheral M1 (especially) and M2 atoms are decreased, while the magnetic moments μ3 and μ4 for the interior M3 and M4 atoms are increased for each M13@(8, 8) hybrid system. In particular, different from the bulk FCC Fe that is antiferromagnetic, the minimum energy magnetic structure of FCC Fe13 free-standing nanowire is ferromagnetic. Furthermore, contrary to the cases of Co13 and Ni13 nanowires, the ferromagnetism is further enhanced after Fe13 nanowire is encapsulated inside (8, 8) silicon carbide nanotube.
机译:对于封装了FCC结构的过渡金属M13(M = Fe,Co,Ni)纳米线,获得了相似的优化结构,即外部纳米管的横截面形状接近正方形,并且纳米线与其外部纳米管之间有相对旋转。在扶手椅(8、8)中的碳化硅纳米管[M13 @(8、8)]内部。还发现,通过碳化硅纳米管封装增强了M13纳米线的稳定性。尽管每个杂化系统的自旋极化P相对于相应的独立纳米线略有降低,但三个杂化系统中Co13 @(8,8)的最大自旋极化值最大为71%,表明它可用于构建有效的旋转运输设备。与相应的独立式纳米线相比,每个M13 @(特别是外围M1和M2原子的磁矩μ1和μ2减小,而内部M3和M4原子的磁矩μ3和μ4增大。 8、8)混合动力系统。特别地,与反铁磁性的块状FCC Fe不同,FCC Fe13独立式纳米线的最小能量磁性结构是铁磁性的。此外,与Co13和Ni13纳米线的情况相反,在将Fe13纳米线封装在碳化硅纳米管(8,8)中后,铁磁性进一步增强。

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