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首页> 外文期刊>Journal of Superconductivity and Novel Magnetism >Theoretical Investigation of Cubic BaVO3 and LaVO3 Perovskites via Tran-Blaha-Modified Becke-Johnson Exchange Potential Approach
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Theoretical Investigation of Cubic BaVO3 and LaVO3 Perovskites via Tran-Blaha-Modified Becke-Johnson Exchange Potential Approach

机译:通过Tran-Blaha改性的BECKE-JOHNSON潜在方法的立方BAVO3和LAVO3 PEROVSKITE的理论调查

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摘要

The full potential linearized augmented plane wave method of density functional theory has been used to investigate the structural, electronic, magnetic and thermoelectric properties of cubic perovskites BaVO3 and LaVO3. The ferromagnetic ground state has been found to be stable by comparing the total energies of non-spin-polarized and spin-polarized calculations performed for optimized unit cells. For both compounds, the bond length and tolerance factor are also measured. From the band structures and density of states plots, it is found that both compounds are half-metallic. We found that the presence of V at the octahedral site of these perovskites develops exchange splitting through p-d hybridization, which results in a stable ferromagnetic state. The observed exchange splitting is further clarified from the magnetic moment, charge and spin of the anion and cations. Finally, we also presented the calculated thermoelectric properties of these materials, which show that half-metallic BaVO3 and LaVO3 materials are potential contenders for thermoelectric applications.
机译:密度函数理论的全电位线性化增强平面波方法用于研究立方佩罗夫斯基酯Bavo3和Lavo3的结构,电子,磁性和热电性能。已经发现,通过比较针对优化的单元电池进行的非旋转偏振和旋转极化计算的总能量,已经发现铁磁性接地状态是稳定的。对于化合物,还测量键合长度和耐受性因子。从频带结构和密度的斑块,发现两种化合物都是半金属。我们发现,这些钙钛矿的八面体部位的V存在于通过P-D杂交产生交换分裂,从而导致稳定的铁磁状态。观察到的交换分裂从阴离子和阳离子的磁矩,电荷和旋转进一步阐明。最后,我们还介绍了这些材料的计算出的热电性质,表明半金属BavO3和Lavo3材料是热电应用的潜在竞争者。

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