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首页> 外文期刊>Journal of Materials Science >Structural, electronic, and optical properties of orthorhombic and triclinic BiNbO_4 determined via DFT calculations
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Structural, electronic, and optical properties of orthorhombic and triclinic BiNbO_4 determined via DFT calculations

机译:通过DFT计算确定正交晶和三斜BiNbO_4的结构,电子和光学性质

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We performed ab initio calculations using the FPLAW method with the local density approximation (LDA) implemented in the WIEN2 k code for the orthorhombic (α) and triclinic (β) phases of BiNbO_4. The modified Becke-Johnson exchange potential (mBJ)-LDA approach was also used to improve the electronic properties. The lattice constants calculated for both structures using the LDA are in good agreement with the experimental values. For the band structure calculations, the mBJ-LDA approach provides reasonable agreement for the band gap value compared with the LDA. The estimated (mBJ)-LDA band gap values are 2.89 eV (3.73 eV) and 2.62 eV (3.15 eV) for the α and β phases of BiNbO_4, respectively. Significant optical anisotropy is clearly observed in the visible-light region. We also calculated and evaluated the electron energy loss spectrum for BiNbO_4. This work provides the first quantitative theoretical prediction of optical properties and electron energy loss spectra for both the orthorhombic and triclinic phases of BiNbO_4.
机译:我们使用FPLAW方法执行了从头计算,并在BiNbO_4的正交相(α)和三斜相(β)相的WIEN2 k代码中实现了局部密度近似(LDA)。改良的Becke-Johnson交换势(mBJ)-LDA方法也用于改善电子性能。使用LDA计算的两种结构的晶格常数与实验值非常吻合。对于带结构计算,与LDA相比,mBJ-LDA方法为带隙值提供了合理的一致性。 BiNbO_4的α和β相的(mBJ)-LDA估计带隙值分别为2.89 eV(3.73 eV)和2.62 eV(3.15 eV)。在可见光区域清楚地观察到明显的光学各向异性。我们还计算和评估了BiNbO_4的电子能量损失谱。这项工作为BiNbO_4的正交相和三斜相的光学性质和电子能量损失谱提供了第一个定量的理论预测。

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