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Electronic structure and the ground-state properties of cobalt antimonide skutterudites: Revisited with different theoretical methods

机译:电子结构和钴锑化方钴矿的基态性质:用不同的理论方法重新探讨

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We have computed the lattice structure, bulk modulus, electronic structure, and cohesive energies for the CoSb_3 skutterudite by performing plane wave and atomic basis set DFT, as well as HF atomic basis set calculations. We find that plane wave and atomic basis set DFT calculations compare almost perfectly well. Band gaps vary significantly, depending on the applied functional and subtle changes of the lattice structure of CoSb_3. Where LDA strongly overestimates the binding, cohesive energies are reasonably well described by GGA and hybrid DFT functionals within 2 eV in comparison to experiment. HF results are unreasonably far off compared to DFT and experimental values for all calculated properties, which indicates that correlation effects play an important role in the characterization of skutterudites.
机译:我们通过执行平面波和原子基础集DFT以及HF原子基础集计算,计算了CoSb_3方钴矿的晶格结构,体积模量,电子结构和内聚能。我们发现,平面波和原子基础集的DFT计算几乎可以很好地比较。带隙变化很大,具体取决于CoSb_3的晶格结构的应用功能和细微变化。当LDA强烈高估了结合力时,与实验相比,GGA和杂化DFT功能在2 eV以内很好地描述了内聚能。与DFT和所有计算特性的实验值相比,HF结果相距遥远,这表明相关效应在方钴矿的表征中起着重要作用。

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