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磁性纳米粒子集合中单个粒子各向异性与粒子间相互作用的相互影响。

The interplay between single particle anisotropy and interparticle interactions in ensembles of magnetic nanoparticles.

机构信息

Istituto di Struttura della Materia - CNR, 00016 Monterotondo Scalo (RM), Italy.

出版信息

Phys Chem Chem Phys. 2018 Nov 21;20(45):28634-28643. doi: 10.1039/c8cp03934h.

Abstract

This paper aims to analyze the competition of single particle anisotropy and interparticle interactions in nanoparticle ensembles using a random anisotropy model. The model is first applied to ideal systems of non-interacting and strongly dipolar interacting ensembles of maghemite nanoparticles. The investigation is then extended to more complex systems of pure cobalt ferrite CoFe2O4 (CFO) and mixed cobalt-nickel ferrite (Co,Ni)Fe2O4 (CNFO) nanoparticles. Both samples were synthetized by the polyol process and exhibit the same particle size (DTEM ≈ 5 nm), but with different interparticle interaction strengths and single particle anisotropy. The implementation of the random anisotropy model allows investigation of the influence of single particle anisotropy and interparticle interactions, and sheds light on their complex interplay as well as on their individual contribution. This analysis is of fundamental importance in order to understand the physics of these systems and to develop technological applications based on concentrated magnetic nanoparticles, where single and collective behaviors coexist.

摘要

本文旨在使用各向异性随机模型分析纳米颗粒体系中单颗粒各向异性和颗粒间相互作用的竞争。该模型首先应用于非相互作用和强偶极相互作用的磁赤铁矿纳米颗粒体系的理想体系中。然后将研究扩展到更为复杂的纯钴铁氧体 CoFe2O4(CFO)和钴镍铁氧体(Co,Ni)Fe2O4(CNFO)纳米颗粒体系。这两种样品均采用多元醇法合成,具有相同的粒径(D TEM ≈ 5nm),但具有不同的颗粒间相互作用强度和单颗粒各向异性。各向异性随机模型的实现可以研究单颗粒各向异性和颗粒间相互作用的影响,揭示它们之间复杂的相互作用以及它们各自的贡献。这一分析对于理解这些体系的物理性质以及开发基于集中磁性纳米颗粒的技术应用具有重要意义,因为在这些应用中,单颗粒和集体行为共存。

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