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First-Principles Study of the Geometric and Electronic Structures of Zinc Ferrite with Vacancy Defect

机译:空位缺陷锌铁氧体的几何和电子结构的第一性原理研究

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摘要

The effects of Zn-vacancy (Zn7Fe16O32), Fe-vacancy (Zn8Fe15O32), and O-vacancy (Zn8Fe16O31) on the geometric and electronic structures of normal spinel ZnFe2O4 (Zn8Fe16O32) are studied by using a first-principles method based on density functional theory (DFT) at a generalized gradient approximation (GGA) level. Compared with perfect ZnFe2O4, the lattice parameters of ZnFe2O4 with Zn-vacancy or Fe-vacancy increase slightly, while the lattice parameters of ZnFe2O4 with O-vacancy decrease significantly. All the vacancy defects induce the distortion of the unit cell structure, especially for the O-vacancy. Zn-vacancy, Fe-vacancy, and O-vacancy in ZnFe2O4 cannot be formed spontaneously, but Zn-vacancy is the most prone to form, followed by Fe-vacancy and O-vacancy under the condition of external energy supply. Zn-vacancy, Fe-vacancy, and O-vacancy change the properties of ZnFe2O4 from a semiconducting character to a metallic character. Either ZnFe2O4 or ZnFe2O4 has various vacancy defects, the strength of the O-Zn bond is stronger than that of the O-Fe bond, and both of them have a covalent bond character. Zn-vacancy enhances the strength of O-Fe bonds and slightly weakens the strength of O-Zn bonds around Zn-vacancy. Fe-vacancy induces a significant increase of the strength of O-Fe bonds and O-Zn bonds around Fe-vacancy. O-vacancy leads to a significant decrease in the strength of O-Zn bonds and to a slight increase in the strength of O-Fe bonds around O-vacancy.
机译:通过基于密度泛函的第一性原理研究了锌空位(Zn7Fe16O32),铁空位(Zn8Fe15O32)和O空位(Zn8Fe16O31)对普通尖晶石ZnFe2O4(Zn8Fe16O32)几何和电子结构的影响。广义梯度近似(GGA)级别的理论(DFT)。与完全ZnFe2O4相比,具有Zn空位或Fe空位的ZnFe2O4的晶格参数略有增加,而具有O空位的ZnFe2O4的晶格参数则显着降低。所有的空位缺陷都会引起晶胞结构的变形,特别是对于O型空位。 ZnFe2O4不能自发形成锌空位,铁空位和氧空位,但最容易形成锌空位,其次是外部能量供应条件下的铁空位和氧空位。 Zn-空位,Fe-空位和O-空位将ZnFe2O4的性质从半导体性变为金属性。 ZnFe 2 O 4或ZnFe 2 O 4都具有各种空位缺陷,O-Zn键的强度比O-Fe键的强度强,并且它们都具有共价键特性。锌空位提高了O-Fe键的强度,并略微削弱了Zn空位周围的O-Zn键的强度。铁空位引起铁空位周围O-Fe键和O-Zn键的强度显着增加。 O空位导致O-Zn键的强度显着降低,并且导致O空位附近的O-Fe键的强度略有增加。

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