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首页> 外文期刊>Computational Materials Science >Structural, electronic and optical properties of Ca _xCd _(1-x)O and its conversion from semimetal to wide bandgap semiconductor
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Structural, electronic and optical properties of Ca _xCd _(1-x)O and its conversion from semimetal to wide bandgap semiconductor

机译:Ca _xCd _(1-x)O的结构,电子和光学性质及其从半金属到宽带隙半导体的转化

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Structural, electronic and optical properties of Ca _xCd _(1-x)O (0 ≤ x ≤ 1) in rocksalt phase are calculated using full potential linearized augmented plane wave (FP-LAPW) method. The results show that the bandgap as well as structural and optical properties of the compound varies with the Ca concentration. The substitution of Cd by Ca, larger than 25%, transforms the ternary oxide from semi-metallic into indirect bandgap semiconductor. The bandgap increases with the increase in calcium while the bulk moduli decreases. The density of states shows that maximum contribution to the valence and conduction bands are due to the Cd-4d, O-2p, Ca-3p and Ca-3d states. Optical properties in the incident photon energy range 0-30 eV reveal that the real part of the complex dielectric constant decreases with the increase in the Ca concentration.
机译:使用全势线性化增强平面波(FP-LAPW)方法计算岩盐相中Ca _xCd _(1-x)O(0≤x≤1)的结构,电子和光学性质。结果表明该化合物的带隙以及结构和光学性质随Ca浓度而变化。用大于25%的Ca代替Cd可使三元氧化物从半金属转变为间接带隙半导体。带隙随钙的增加而增加,而体积模量则减小。态密度表明,对价和导带的最大贡献归因于Cd-4d,O-2p,Ca-3p和Ca-3d态。入射光子能量范围为0-30 eV的光学性质表明,复合介电常数的实部随Ca浓度的增加而降低。

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