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Non-stoichiometric zinc-ferrite spinel nanoparticles

机译:非化学计量的锌铁氧体尖晶石纳米颗粒

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When prepared as a bulk material, ZnFe2O4 has a normal spinel structure with Zn2+ incorporated almost exclusively at the tetrahedral lattice sites and Fe3+ at the octahedral sites ((Zn)[Fe2]O4). Due to its “rigid” structure, its composition is also closely defined at Zn2+/Fe3+ ≅ 0.5. However, when prepared as nanoparticles, a significant proportion of Zn can enter the zinc-ferrite structure at the octahedral sites, resulting in a flexibility of the composition. In this work, the non-stoichiometry of zinc-ferrite nanoparticles was studied as a function of the particle size. Nanoparticles with a narrow size distribution were synthesized using co-precipitation in water-in-oil microemulsions. The zinc-ferrite nanoparticles with a size of ~9 nm retained the single-phase spinel structure when Zn/Fe was between 0 and ~0.8. With a decrease in the particle size the compositional range of the zinc-ferrite spinel broadened. The process of structural rearrangement during the heating of the nanoparticles was also studied.
机译:ZnFe2 O4 作为散装材料时,具有正常的尖晶石结构,其中Zn2 + 几乎全部掺入四面体晶格位置,Fe3 + 掺入八面体位置((Zn) [Fe2 ] O4 )。由于其“刚性”结构,其组成也被严格定义为Zn2 + / Fe3 + ≅0.5。然而,当制备为纳米颗粒时,大量的Zn可以在八面体位置进入锌铁氧体结构,从而导致组合物的柔韧性。在这项工作中,研究了锌铁氧体纳米粒子的非化学计量与粒径的关系。使用油包水微乳液中的共沉淀法合成了具有窄尺寸分布的纳米颗粒。当Zn / Fe在0和〜0.8之间时,尺寸为〜9 nm的锌铁氧体纳米颗粒保留了单相尖晶石结构。随着粒径的减小,铁酸锌尖晶石的组成范围扩大。还研究了纳米颗粒加热过程中的结构重排过程。

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