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一步溶剂热法合成镍钴铁氧体纳米颗粒中的磁异常观测

Observation of magnetic anomalies in one-step solvothermally synthesized nickel-cobalt ferrite nanoparticles.

作者信息

Datt Gopal, Sen Bishwas Mousumi, Manivel Raja M, Abhyankar A C

机构信息

Department of Materials Engineering, Defence Institute of Advanced Technology, Girinagar, Pune 411025, India.

Physical and Materials Chemistry Division, CSIR-National Chemical Laboratory, Dr. Homi Bhabha Road, Pune 411 008, India.

出版信息

Nanoscale. 2016 Mar 7;8(9):5200-13. doi: 10.1039/c5nr06791j.

Abstract

Magnetic anomalies corresponding to the Verwey transition and reorientation of anisotropic vacancies are observed at 151 K and 306 K, respectively, in NiCoFe2O4 nanoparticles (NPs) synthesized by a modified-solvothermal method followed by annealing. Cationic disorder and spherical shape induced non-stoichiometry suppress the Verwey transition in the as-synthesized NPs. On the other hand, reorientation of anisotropic vacancies is quite robust. XRD and electron microscopy investigations confirm a single phase spinel structure and the surface morphology of the as-synthesized NPs changes from spherical to octahedral upon annealing. Rietveld analysis reveals that the Ni(2+) ions migrate from tetrahedral (A) to octahedral (B) sites upon annealing. The Mössbauer results show canted spins in both the NPs and the strength of superexchange is stronger in Co-O-Fe than Ni-O-Fe. Magnetic force images show that the as-synthesised NPs are single-domain whereas the annealed NPs are multi-domain octahedral particles. The FMR study reveals that both the NPs have a broad FMR line-width; and resonance properties are consistent with the random anisotropy model. The broad inhomogeneous FMR line-width, observation of the Verwey transition, tuning of the magnetic domain structure as well as the magnetic properties suggest that the NiCoFe2O4 ferrite NPs may be promising for future generation spintronics, magneto-electronics, and ultra-high-density recording media as well as for radar absorbing applications.

摘要

通过改进的溶剂热法合成并退火后的NiCoFe2O4纳米颗粒(NPs)中,分别在151 K和306 K观察到与Verwey转变和各向异性空位重新取向相对应的磁异常。阳离子无序和球形诱导的非化学计量抑制了合成态NPs中的Verwey转变。另一方面,各向异性空位的重新取向相当稳定。X射线衍射(XRD)和电子显微镜研究证实了单相尖晶石结构,并且合成态NPs的表面形态在退火后从球形变为八面体。Rietveld分析表明,退火后Ni(2+)离子从四面体(A)位迁移到八面体(B)位。穆斯堡尔谱结果表明,NPs中均存在倾斜自旋,且Co-O-Fe中的超交换强度比Ni-O-Fe中的更强。磁力图像显示,合成态NPs为单畴,而退火后的NPs为多畴八面体颗粒。铁磁共振(FMR)研究表明,两种NPs均具有较宽的FMR线宽;共振特性与随机各向异性模型一致。宽的非均匀FMR线宽、Verwey转变的观察、磁畴结构的调整以及磁性能表明,NiCoFe2O4铁氧体NPs在下一代自旋电子学、磁电子学、超高密度记录介质以及雷达吸收应用方面可能具有广阔前景。

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