Ab initio simulation of magnetically functionalized carbon nanotubes

V. Nelayev, K. Dovzhik
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引用次数: 2

Abstract

Fe and Fe3C nanoclusters are of interest because of their potential use in spintronics. Such systems may be fabricated inside carbon nanotubes, where exchange bias has is important. An additional motivation to study these systems is to investigate the influence of iron-carbon interaction determines on magnetic ordering and properties of the system Fe cluster in carbon nanotube (CNT) The structural arrangements and magnetic properties of iron encapsulated in carbon nanotubes were investigated.. The geometry and magnetic structure of freestanding state and encapsulated in CNT Fe and cementite Fe3C clusters were simulated using ab initio methods. Besides, properties of the Fe cluster-nanotube system was studied when clusters are present in the single and multiwall carbon nanotubes. When the ratio of the cluster to nanotube diameter is enough small the system is stable and the spin polarization near the Fermi energy is high. If that ratio is close to 1, such system is less stable and a tendency towards antiferromagnetic ordering is revealed.
磁功能化碳纳米管的从头算模拟
铁和Fe3C纳米团簇由于其在自旋电子学中的潜在应用而引起了人们的兴趣。这种系统可以在碳纳米管内制造,因为交换偏置很重要。研究这些体系的另一个动机是研究铁-碳相互作用决定因素对碳纳米管(CNT)中铁簇的磁有序和性能的影响。采用从头算方法模拟了碳纳米管Fe和渗碳Fe3C簇中独立态和封装态的几何和磁性结构。此外,还研究了单壁碳纳米管和多壁碳纳米管中存在铁团簇时,铁团簇-纳米管体系的性能。当团簇与纳米管直径之比足够小时,系统稳定,且在费米能量附近的自旋极化较高。如果该比值接近于1,则系统稳定性较差,并显示出反铁磁有序的趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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