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Li₂O结构、能量、电子及缺陷性质的理论分析

Theoretical analysis of structural, energetic, electronic, and defect properties of Li2O.

作者信息

Islam Mazharul M, Bredow Thomas, Minot Christian

机构信息

Theoretische Chemie, Universität Hannover, Am Kleinen Felde 30, 30167 Hannover, Germany.

出版信息

J Phys Chem B. 2006 May 18;110(19):9413-20. doi: 10.1021/jp0566764.

Abstract

The structural, energetic, and electronic properties of stoichiometric and defective Li(2)O were studied theoretically. The reliability of the Perdew-Wang method in the framework of density functional theory (DFT), and of two DFT/Hartree-Fock hybrid methods (PW1PW and B3LYP), was examined by comparison of calculated and available experimental data. Atom-centered orbitals and plane waves were used as basis functions for the crystalline orbitals. For both cases, the basis set dependence of calculated properties was investigated. With most of the methods, good agreement with the experimental Li(2)O lattice parameter and cohesive energy was obtained. In accordance with experiment, the analysis of electronic properties shows that Li(2)O is a wide gap insulator. Among the considered methods, the hybrid methods PW1PW and B3LYP give the best agreement with experiment for the band gap. The formation of an isolated cation vacancy defect and an F center in Li(2)O were studied. The effect of local relaxation on the calculated defect formation energies and the defect-induced changes of electronic properties were investigated and compared to available experimental results. The migration of a Li(+) ion in Li(2)O bulk was investigated. The activation energy for the migration of a Li(+) ion from its regular tetrahedral site to an adjacent cation vacancy was calculated, including the effect of local relaxation. The calculated activation barriers, 0.27-0.33 eV, are in excellent agreement with experiment.

摘要

从理论上研究了化学计量比和有缺陷的Li₂O的结构、能量及电子性质。通过比较计算数据和现有实验数据,检验了密度泛函理论(DFT)框架下的Perdew-Wang方法以及两种DFT/哈特里-福克混合方法(PW1PW和B3LYP)的可靠性。以原子中心轨道和平坦波作为晶体轨道的基函数。对于这两种情况,均研究了计算性质对基组的依赖性。使用大多数方法时,计算得到的Li₂O晶格参数和内聚能与实验结果吻合良好。与实验结果一致,电子性质分析表明Li₂O是一种宽带隙绝缘体。在所考虑的方法中,混合方法PW1PW和B3LYP在带隙方面与实验结果吻合得最好。研究了Li₂O中孤立阳离子空位缺陷和F心的形成。研究了局部弛豫对计算得到的缺陷形成能和缺陷诱导的电子性质变化的影响,并与现有实验结果进行了比较。研究了Li⁺离子在Li₂O体相中的迁移。计算了Li⁺离子从其规则四面体位置迁移到相邻阳离子空位的活化能,其中包括局部弛豫的影响。计算得到的活化能垒为0.27 - 0.33 eV,与实验结果高度吻合。

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