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首页> 外文期刊>European Physical Journal Plus >Ab initio study on half-metallic, electronic and thermodynamic attributes of LaFeO3
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Ab initio study on half-metallic, electronic and thermodynamic attributes of LaFeO3

机译:leafe3的半金属,电子和热力学属性的AB Initio研究

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By using the density functional theory (DFT) the systematic study of the structural, electronic and thermodynamic properties of lanthanum ferrite (LaFeO3) has been conducted. The elastic stability criterion and structural tolerance factor reveal that LaFeO3 exists in the cubic phase and is found to be stable under the ambient conditions. In electronic properties, the optical spectrum of the compound has been found to fall in the range of 488 to 688 nm which has been calculated from the electronic band gap values by using the PBE-GGA and mBJ-GGA techniques. The light between 488 to 688 nm would cause the valence electrons to jump in the conduction band showing the photoconductivity. The pronounced half-metallic character has been discussed by using the projected electronic density of states. The ferromagnetic response has been observed which may be attributed to the Fe-O bonding situation. The compound exhibits ductile, indirect band gap and half-metallic traits in the bulk phase. We expect the compound to be felicitous for the novel spintronic applications.
机译:通过使用密度函数理论(DFT),已经进行了镧铁氧体(Lafeo3)的结构,电子和热力学性质的系统研究。弹性稳定性标准和结构耐受因子揭示了Lafeo3存在于立方相的情况下,并且发现在环境条件下是稳定的。在电子性质中,已发现化合物的光谱下降在488至688nm的范围内,通过使用PBE-GGA和MBJ-GGA技术从电子带隙值计算。 488至688nm之间的光将导致价电子跳进显示光电导的导带。通过使用州的投影电子密度讨论了明显的半金属字符。已经观察到铁磁反应,其可能归因于FE-O键合情况。该化合物在体相中表现出延性,间接带隙和半金属性状。我们预计该化合物对新型旋转性应用令人担忧。

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