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首页> 外文期刊>Physica, B. Condensed Matter >Density functional study of manganese atom adsorption on hydrogen-terminated armchair boron nitride nanoribbons
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Density functional study of manganese atom adsorption on hydrogen-terminated armchair boron nitride nanoribbons

机译:氢原子扶手椅氮化硼纳米带上锰原子吸附的密度泛函研究

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摘要

In this paper, we have investigated stable structural, electric and magnetic properties of manganese (Mn) atom adsorption on armchair hydrogen edge-terminated boron nitride nano ribbon (A-BNNRs) using first principles method based on density-functional theory with the generalized gradient approximation. Calculation shows that Mn atom situated on the ribbons of A-BNNRs is the most stable configuration, where the bonding is more pronounced. The projected density of states (PDOS) of the favored configuration has also been computed. It has been found that the covalent bonding of boron (B), nitrogen (N) and Mn is mainly contributed by s, d like-orbitals of Mn and partially occupied by the 2p like-orbital of N. The difference in energy between the inner and the edge adsorption sites of A-BNNRs shows that Mn atoms prefer to concentrate at the edge sites. The electronic structures of the various configurations are wide, narrow-gap semiconducting and half-metallic, and the magnetic moment of Mn atoms are well preserved in all considered configurations. This has shown that the boron nitride (BN) sheet covered with Mn atoms demonstrates additional information on its usefulness in future spintronics, molecular magnet and nanoelectronics devices.
机译:在本文中,我们基于密度泛函理论和广义梯度的第一原理方法研究了锰原子在扶手椅氢封端的氮化硼纳米带(A-BNNRs)上的稳定结构,电学和磁学性质。近似。计算表明,位于A-BNNRs带上的Mn原子是最稳定的构型,其结合更为明显。还计算了首选配置的预计状态密度(PDOS)。已经发现,硼(B),氮(N)和锰的共价键主要是由锰的s,d类轨道贡献的,部分由氮的2p类轨道占据的。 A-BNNRs的内部和边缘吸附位点表明,Mn原子倾向于集中在边缘位点。各种配置的电子结构是宽的,窄带隙的半导体和半金属的,并且在所有考虑的配置中都能很好地保留Mn原子的磁矩。这表明,覆盖有Mn原子的氮化硼(BN)片证明了其在未来自旋电子学,分子磁体和纳米电子器件中的有用性的其他信息。

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