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Structural, elastic and optoelectronic properties of the hydrogen based perovskite compounds: Ab-initio study

机译:氢基钙钛矿化合物的结构,弹性和光电性质:AB-Initio研究

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摘要

The structural, elastic, electronic and optical properties of the cubic CaMH3 (M=Ni and Pd) compounds are investigated using first principle calculations based on the density functional theory (DFT) as implemented in the Wien2k code. The calculated lattice constants are found to be in good agreement with the values reported in the previous literature. The analysis of standard enthalpy of formation shows that both CaNiH3 and CaPdH3 are thermodynamically stable. The bulk modulus and cohesive energy values indicate that CaNiH3 is less compressible and more rigid than CaPdH3. The bonding forces between atoms of the studied compounds are mainly ionic and partially covalent. The real and imaginary parts of the dielectric function are used to calculate the optical properties. The partial density of states for the present compounds are used to explain the main peaks of the optical spectra. Beneficial optoelectronic applications are predicted from the analysis of the optical spectra of CaNiH3 and CaPdH3 compounds.
机译:使用基于Wien2K码中实施的密度泛函理论(DFT)的第一原理计算来研究立方CAMH3(M = NI和PD)化合物的结构,弹性,电子和光学性质。计算出计算的格子常数与先前文献中报告的价值观吻合良好。地层标准焓分析表明,CaniH3和Capdh3都是热力学上稳定的。体积模量和粘性能量值表明CaniH3不可压缩,比CAPDH3更刚。所研究的化合物的原子之间的粘合力主要是离子和部分共价。电介质函数的真实和虚部用于计算光学性质。本化合物的各种状态的部分密度用于解释光谱的主峰。从CaniH3和CapDH3化合物的光谱分析预测有益的光电应用。

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