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通过溶剂介导的温和氧化进行缺陷工程作为在金属掺杂铁氧体中诱导交换偏置的工具。

Defect-Engineering by Solvent Mediated Mild Oxidation as a Tool to Induce Exchange Bias in Metal Doped Ferrites.

作者信息

Muzzi Beatrice, Albino Martin, Petrecca Michele, Innocenti Claudia, de Julián Fernández César, Bertoni Giovanni, Ibarra M Ricardo, Christensen Mogens, Avdeev Maxim, Marquina Clara, Sangregorio Claudio

机构信息

Department of Biotechnology, Chemistry and Pharmacy, University of Siena, Siena, I-53100, Italy.

Istituto di Chimica dei Composti Organometallici (ICCOM), Consiglio Nazionale delle Ricerche (CNR), Sesto Fiorentino (FI), I-50019, Italy.

出版信息

Small Methods. 2023 Nov;7(11):e2300647. doi: 10.1002/smtd.202300647. Epub 2023 Aug 30.

Abstract

The crystal site occupancy of different divalent ions and the induction of lattice defects represent an additional tool for modifying the intrinsic magnetic properties of spinel ferrites nanoparticles. Here, the relevance of the lattice defects is demonstrated in the appearance of exchange-bias and in the improvement of the magnetic properties of doped ferrites of 20 nm, obtained from the mild oxidation of core@shell (wüstite@ferrite) nanoparticles. Three types of nanoparticles (Fe0 O@Fe O , Co Fe O@Co Fe O and Ni Co Fe O@Ni Co Fe O ) are oxidized. As a result, the core@shell morphology is removed and transformed in a spinel-like nanoparticle, through a topotactic transformation. This study shows that most of the induced defects in these nanoparticles and their magnetic properties are driven by the inability of the Co ions at the octahedral sites to migrate to tetrahedral sites, at the chosen mild oxidation temperature. In addition, the appearance of crystal defects and antiphase boundaries improves the magnetic properties of the starting compounds and leads to the appearance of exchange bias at room temperature. These results highlight the validity of the proposed method to impose novel magnetic characteristics in the technologically relevant class of nanomaterials such as spinel ferrites, expanding their potential exploitation in several application fields.

摘要

不同二价离子的晶体位点占有率以及晶格缺陷的诱导是改变尖晶石铁氧体纳米颗粒本征磁性能的另一种手段。在此,通过对核壳(方铁矿@铁氧体)纳米颗粒进行温和氧化得到的20 nm掺杂铁氧体,晶格缺陷的相关性在交换偏置的出现以及磁性能的改善方面得到了证明。三种类型的纳米颗粒(Fe0 O@Fe O 、Co Fe O@Co Fe O 和Ni Co Fe O@Ni Co Fe O )被氧化。结果,通过拓扑转变,核壳形态被去除并转变为类尖晶石纳米颗粒。该研究表明,在选定的温和氧化温度下,这些纳米颗粒中诱导产生的大多数缺陷及其磁性能是由八面体位点上的Co离子无法迁移到四面体位点所驱动的。此外,晶体缺陷和反相边界的出现改善了起始化合物的磁性能,并导致在室温下出现交换偏置。这些结果突出了所提出的方法在赋予诸如尖晶石铁氧体这类技术相关纳米材料新颖磁特性方面的有效性,拓展了它们在多个应用领域的潜在应用。

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