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首页> 外文期刊>The American mineralogist >Density functional calculations of the electronic structure and optical properties of aluminosilicate polymorphs (Al2SiO5)
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Density functional calculations of the electronic structure and optical properties of aluminosilicate polymorphs (Al2SiO5)

机译:铝硅酸盐多晶型物(Al2SiO5)的电子结构和光学性质的密度泛函计算

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摘要

The density functional theory (DFT) based orthogonalized linear combination of atomic orbitals (OLCAO) method is used to study the electronic structure and spectroscopic properties of three alumino silicate polymorphs (Al2SiO5), andalusite, sillimanite, and kyanite. These polymorphs are precursors to mullite, which is an excellent refractory material. The electronic structure results include the band structure. total and partial density of states, bond order, and Mullikan effective charge (Q*), whereas the spectroscopic properties include X-ray absorption near-edge-structure (XANES), and the complex optical dielectric functions (epsilon(1) + i epsilon(2)) for each polymorph. For the XANES calculations, we use a supercell approach and account for the electron-core hole interaction. Our calculations show that the polymorphs are insulators with direct band gaps of 5.05, 5.21, and 5.80 eV for andalusite, sillimanite, and kyanite, respectively. The calculated refractive indices (n) for each material are in agreement with experimental values from the literature. Results on the XANES spectral calculations (K-edge and L-edge) for all crystallographically nonequivalent ions in the polymorphs are presented. It is shown that to achieve excellent agreement with the experimentally measured spectrum, a weighted sum of the spectra from crystallographically inequivalent sites must be used. The analysis of the XANES spectra based on differences in the local bonding environments are provided.
机译:基于密度泛函理论(DFT)的原子轨道正交线性组合(OLCAO)方法用于研究三种铝硅酸盐多晶型物(Al2SiO5),红柱石,硅线石和蓝晶石的电子结构和光谱性质。这些多晶型物是莫来石的前体,莫来石是极好的耐火材料。电子结构结果包括能带结构。状态的总密度和部分密度,键序和Mullikan有效电荷(Q *),而光谱特性包括X射线吸收近边缘结构(XANES)和复杂的光学介电函数(epsilon(1)+ i每个多晶形的epsilon(2))。对于XANES计算,我们使用超级单元方法并考虑了电子-核空穴相互作用。我们的计算表明,多晶型物是红柱石,硅线石和蓝晶石的直接带隙分别为5.05、5.21和5.80 eV的绝缘体。每种材料的计算折射率(n)与文献中的实验值一致。给出了多晶型物中所有晶体学上不等价离子的XANES光谱计算结果(K边缘和L边缘)。结果表明,为了与实验测量的光谱达到极好的一致性,必须使用晶体学上不等价位点的光谱的加权总和。提供了基于本地键合环境差异的XANES光谱分析。

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