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团簇组装的TM@Si纳米管(TM = Cr、Mn和Fe)的磁性、结构与稳定性:密度泛函研究

Magnetism, structures and stabilities of cluster assembled TM@Si nanotubes (TM = Cr, Mn and Fe): a density functional study.

作者信息

Dhaka Kapil, Bandyopadhyay Debashis

机构信息

Department of Physics, Birla Institute of Technology and Science, Pilani, Rajasthan 333031, India.

出版信息

Dalton Trans. 2016 Aug 2;45(31):12432-43. doi: 10.1039/c6dt01252c.

Abstract

The present study reports transition metal (TM = Cr, Mn and Fe) doped silicon nanotubes with tunable band structures and magnetic properties by careful selection of cluster assemblies as building blocks using the first-principles density functional theory. We found that the transition metal doping and in addition, the hydrogen termination process can stabilize the pure silicon nanoclusters or cluster assemblies and then it could be extended as magnetic nanotubes with finite magnetic moments. Study of the band structures and density of states (DOS) of different empty and TM doped nanotubes (Type 1 to Type 4) show that these nanotubes are useful as metals, semiconductors, semi-metals and half-metals. These designer magnetic materials could be useful in spintronics and magnetic devices of nanoscale order.

摘要

本研究报告了通过使用第一性原理密度泛函理论,精心选择团簇组装体作为构建单元,制备出具有可调谐能带结构和磁性的过渡金属(TM = Cr、Mn和Fe)掺杂硅纳米管。我们发现,过渡金属掺杂以及氢封端过程可以使纯硅纳米团簇或团簇组装体稳定下来,进而可以将其扩展为具有有限磁矩的磁性纳米管。对不同空的和TM掺杂纳米管(类型1至类型4)的能带结构和态密度(DOS)的研究表明,这些纳米管可用作金属、半导体、半金属和半金属。这些设计的磁性材料可用于纳米级的自旋电子学和磁性器件。

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