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首页> 外文期刊>Journal of Electronic Materials >First-Principles Study of Electronic Structure, Mechanical, and Thermoelectric Properties of Ternary Palladates CdPd3O4 and TlPd3O4
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First-Principles Study of Electronic Structure, Mechanical, and Thermoelectric Properties of Ternary Palladates CdPd3O4 and TlPd3O4

机译:三元钯CDPD3O4和TLPD3O4的电子结构,机械和热电性能的第一原理研究

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摘要

Ternary palladates CdPd3O4 and TlPd3O4 have been studied theoretically using the generalized gradient approximation (GGA), modified Becke-Johnson, and spin-orbit coupling (GGA-SOC) exchange-correlation functionals in the density functional theory (DFT) framework. From the calculated ground-state properties, it is found that SOC effects are dominant in these palladates. Mechanical properties reveal that both compounds are ductile in nature. The electronic band structures show that CdPd3O4 is metallic, whereas TlPd3O4 is an indirect-bandgap semiconductor with energy gap of 1.1 eV. The optical properties show that TlPd3O4 is a good dielectric material. The dense electronic states, narrow-gap semiconductor nature, and Seebeck coefficient of TlPd3O4 suggest that it could be used as a good thermoelectric material. The magnetic susceptibility calculated by post-DFT treatment confirmed the paramagnetic behavior of these compounds.
机译:通过在密度泛函理论(DFT)框架中,从理论上使用广义梯度近似(GGA),修改的BECKE-JOWNSON(GGA-SOC)交换 - 相关函数理论上研究了三元钯CDPD3O4和TLPD3O4。 从计算出的地面性质,发现SOC效应在这些钯中占主导地位。 机械性质表明,两种化合物本质上是延性。 电子频带结构表明CDPD3O4是金属的,而TLPD3O4是具有1.1eV的能隙的间接带隙半导体。 光学性质表明TLPD3O4是良好的介电材料。 TLPD3O4的密集电子状态,窄间隙半导体性质和塞贝克系数表明它可以用作良好的热电材料。 通过后DFT治疗计算的磁性敏感性证实了这些化合物的顺磁性行为。

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