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The electronic structure of MgO nanotubes. An ab initio quantum mechanical investigation

机译:MgO纳米管的电子结构。 AB Initio量子机械调查

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摘要

The structural, vibrational and response properties of the (n,0) and (m,m) MgO nanotubes are computed by using a Gaussian type basis set, a hybrid functional (B3LYP) and the CRYSTAL09 code. Tubes in the range 6 ≤ n ≤ 140 and 3 ≤ m ≤ 70 were considered, being n = 2 × m the number of MgO units in the unit cell (so, the maximum number of atoms is 280). Tubes are built by rolling up the fully relaxed 2-D conventional cell (2 MgO units, with oxygen atoms protruding from the Mg plane alternately up and down by 0.38 A). The relative stability of the (n,0) with respect to the (m,m) family, the relaxation energy and equilibrium geometry, the band gap, the IR vibrational frequencies and intensities, and the electronic and ionic contributions to the polarizability are reported. All these properties are shown to converge smoothly to the monolayer values. Absence of negative vibrational frequencies confirms that the tubes have a stable structure. The parallel component of the polarizability α~(II) converges very rapidly to the monolayer value, whereas α~⊥ is still changing at n = 140; however, when extrapolated to very large n values, it coincides with the monolayer value to within 1%. The electronic contribution to α is in all cases (α~(II) and α~⊥; 6 ≤ n ≤ 140) smaller than the vibrational contribution by about a factor of three, at variance with respect to more covalent tubes such as the BN ones, for which the ratio between the two contributions is reversed.
机译:通过使用高斯型基础集,混合功能(B3LYP)和Crystal09代码来计算(n,0)和(m)和(m)MgO纳米管的结构,振动和响应性质。考虑了6≤n≤140和3≤M≤0的管道,是单位电池中的MgO单元数(因此,原子数为280)的n = 2×m。通过卷起完全放松的2-D常规电池(2 MgO单元,用从Mg平面突出0.38A的氧原子来构建管。报道了(n,0)相对于(m,m)家族,弛豫能量和平衡几何形状,带隙,IR振动频率和强度的相对稳定性,以及对所述极化性的电子和离子贡献。所有这些属性都显示为平滑地收敛到单层值。没有负振动频率证实管子具有稳定的结构。极化性α〜(ii)的平行分量迅速地收敛于单层值,而α〜⊥仍在n = 140处变化;然而,当外推到非常大的n值时,它将单层值与单层值一致。对α的电子贡献在所有情况下(α〜(ii)和α〜⊥;6≤n≤140)小于振动贡献的振动贡献大约三倍,在相对于更多共价管(例如BN)的方差其中两种贡献之间的比率逆转。

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    Equipe de Chimie physique 1PKEM UMR 5254 Technopole Helioparc 2 avenue du President Pierre Angot 64053 Pau Cedex 09 France.;

    Dipartimento di Chimica IFM Universita di Torino and NIS -Nanostructured Interfaces and Surfaces - Centre of Excellence Via P. Oiuria 7 10125 Torino Italy.;

    Equipe de Chimie physique 1PKEM UMR 5254 Technopole Helioparc 2 avenue du President Pierre Angot 64053 Pau Cedex 09 France.;

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