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首页> 外文期刊>International Journal of Quantum Chemistry >Electronic band structure calculations of the MNX (M = Zr, Ti; X = Cl, Br, I) system and its superconducting member, Li-doped beta-ZrNCl
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Electronic band structure calculations of the MNX (M = Zr, Ti; X = Cl, Br, I) system and its superconducting member, Li-doped beta-ZrNCl

机译:MNX(M = Zr,Ti; X = Cl,Br,I)系统及其超导成员掺锂的β-ZrNCl的电子能带结构计算

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Electronic band structure calculations have been performed for beta-ZrNCl, beta-ZrNBr, alpha-ZrNBr, alpha-ZrNl, and alpha-TiNX (X = Cl, Br, I) using the extended Huckel method. These calculations reveal that n-doped beta-ZrNCl has a single narrow band at the Fermi level which is stabilized by overlap of 4dz(2) orbitals on zirconium with respect to the remainder of the conduction band states, This band shows only a small degree of dispersion and can essentially be described as a localized Zr-Zr bond when the carrier concentrations are low. The calculated band structure is consistent with the experimental observations of activated carrier transport, and an indirect optical band gap in beta-ZrNCl and beta-ZrNBr, A simple picture is presented which describes a mechanism for strong electron-phonon coupling in the beta-ZrNX structure, suggesting that beta-LixZrNCl is a classical BCS superconductor. This localized 4dz(2) band at the Fermi level is absent in the electronic band structures of alpha-ZrNX and alpha-TiNX compounds. The dispersion relations for these compounds show a direct optical band gap, as observed experimentally. The absence of significant metal-metal bonding in alpha-MNX compounds implies that n-doping will be more difficult to achieve in compounds adopting this structure. The relative stability of alpha- and beta-polymorphs is also discussed. (C) 1998 Academic Press. [References: 22]
机译:已经使用扩展的Huckel方法对β-ZrNCl,β-ZrNBr,α-ZrNBr,α-ZrN1和α-TiNX(X = Cl,Br,I)进行了电子能带结构计算。这些计算表明,n掺杂的β-ZrNCl在费米能级处具有一个窄带,该带通过锆上4dz(2)轨道相对于其余导带态的重叠而稳定,该带仅显示很小的程度。当载流子浓度低时,基本上可以描述为局部Zr-Zr键。计算出的能带结构与激活载流子传输的实验观察结果一致,并且与β-ZrNCl和β-ZrNBr中存在间接的光学带隙。给出了一张简单的图片,描述了β-ZrNX中强电子-声子耦合的机理结构,表明β-LixZrNCl是经典的BCS超导体。该局部化的4dz(2)能带处于费米能级,在α-ZrNX和α-TiNX化合物的电子能带结构中不存在。如实验观察到的,这些化合物的色散关系显示出直接的光学带隙。 alpha-MNX化合物中不存在明显的金属-金属键,这意味着采用这种结构的化合物很难实现n掺杂。还讨论了α-和β-多晶型物的相对稳定性。 (C)1998年学术出版社。 [参考:22]

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