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Li₂B₄O₇的结构和电子性质

Structural and electronic properties of Li(2)b(4)O(7).

作者信息

Islam Mazharul M, Maslyuk Volodymyr V, 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. 2005 Jul 21;109(28):13597-604. doi: 10.1021/jp044715q.

Abstract

The reliability of various quantum-chemical approaches for the calculation of bulk properties of lithium tetraborate Li(2)B(4)O(7) was examined. Lattice parameters and the electronic structure obtained with density-functional theory (DFT), with DFT-Hartree-Fock (HF) hybrid methods, and with the semiempirical method MSINDO were compared to available experimental data. We also compared the results at DFT level using different wave functions, either based on linear combinations of atom-centered orbitals (LCAO), or on plane waves, as implemented in the crystalline orbital programs CRYSTAL and VASP. The basis set dependence of calculated properties was investigated for the LCAO method. In the plane wave approach ultrasoft pseudopotentials (US PP), and projector-augmented wave (PAW) potentials were used to represent the core electrons. For all methods under consideration, the calculated Li(2)B(4)O(7) structure parameters are close to each other and agree within a few percent with measured values. A more pronounced method dependence was found for the band structure, the band gap and the cohesive energy. Closest agreement between theoretical and experimental results for the band gap was obtained with the DFT-HF hybrid methods while pure DFT methods underestimate and HF based methods overestimate the measured value. It was found that the calculated band gap strongly depends on the atomic basis set in the LCAO approach. The description of the core electrons considerably affects the cohesive energy obtained with the plane wave approach. Atomic charges based on a Mulliken analysis were compared to effective charges obtained from Raman spectroscopy. Electron density maps are used to analyze the character of B-O and Li-O interactions.

摘要

研究了各种量子化学方法计算四硼酸锂Li₂B₄O₇体相性质的可靠性。将密度泛函理论(DFT)、DFT-哈特里-福克(HF)混合方法以及半经验方法MSINDO得到的晶格参数和电子结构与现有的实验数据进行了比较。我们还比较了在DFT水平下使用不同波函数的结果,这些波函数要么基于以原子为中心的轨道(LCAO)的线性组合,要么基于平面波,如在晶体轨道程序CRYSTAL和VASP中实现的那样。研究了LCAO方法中计算性质对基组的依赖性。在平面波方法中,使用超软赝势(US PP)和投影增强波(PAW)势来表示内层电子。对于所有考虑的方法,计算得到的Li₂B₄O₇结构参数彼此接近,与测量值的偏差在百分之几以内。对于能带结构、带隙和内聚能,发现方法依赖性更为明显。对于带隙,DFT-HF混合方法得到的理论结果与实验结果最接近,而纯DFT方法低估了测量值,基于HF的方法高估了测量值。发现计算得到的带隙强烈依赖于LCAO方法中的原子基组。内层电子的描述对平面波方法得到的内聚能有很大影响。将基于穆利肯分析的原子电荷与从拉曼光谱获得的有效电荷进行了比较。使用电子密度图来分析B-O和Li-O相互作用的特征。

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