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首页> 外文期刊>International Journal of Quantum Chemistry >Influence of pressure on piezoelectric, polarizing, and magnetic nature ofSmFeO(3): ADFTstudy
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Influence of pressure on piezoelectric, polarizing, and magnetic nature ofSmFeO(3): ADFTstudy

机译:压力对压电,偏振,磁性的影响(3):ADFTSTUDY

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摘要

In this article, we have presented structural, electronic, magnetic, mechanical, and optical attributes of SmFeO(3)under pressure up to 80 GPa. These aforesaid properties are investigated by using state-of-the-art density functional theory. The structural stability of the compound has been tested using the tolerance factor, enthalpy of formation, and elastic stability criteria of the elastic constants. Electronic band structure, the density of states, high magnetic moment, and Fermi surface analysis affirms the ferromagnetic nature of the studied compound throughout the pressure. We expect piezoelectric phenomena of the compound to be between 20 and 40 GPa pressure due to the increasing internal strain parameter with pressure. Moreover, the polarizing nature of the material is pressure-dependent, which seems to decrease with an increase in pressure, while the minimum thermal conductivity of the compound is observed to be maximum along (110) direction, which increases with an increase in pressure. Our results suggested that the studied compound could be useful in the spintronic industry, in pressure-dependent fast memory storage devices, and in piezoelectric sensors.
机译:在这篇文章中,我们介绍了在高达80GPa的压力下SmFeO(3)的结构、电子、磁性、机械和光学特性。利用最新的密度泛函理论研究了上述性质。使用公差系数、生成焓和弹性常数的弹性稳定性标准对化合物的结构稳定性进行了测试。电子能带结构、态密度、高磁矩和费米表面分析证实了所研究化合物在整个压力下的铁磁性。由于内应变参数随压力的增加而增加,我们预计该化合物的压电现象在20到40 GPa压力之间。此外,材料的极化性质取决于压力,似乎随着压力的增加而降低,而观察到化合物的最小热导率沿(110)方向最大,随着压力的增加而增加。我们的研究结果表明,所研究的化合物可能在自旋电子工业、压力相关快速存储设备和压电传感器中有用。

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