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非化学计量尖晶石型氧化铁纳米微晶的局域和长程原子/磁结构

Local and long-range atomic/magnetic structure of non-stoichiometric spinel iron oxide nanocrystallites.

作者信息

Andersen Henrik L, Frandsen Benjamin A, Gunnlaugsson Haraldur P, Jørgensen Mads R V, Billinge Simon J L, Jensen Kirsten M Ø, Christensen Mogens

机构信息

Department of Chemistry and Interdisciplinary Nanoscience Center, Aarhus University, Langelandsgade 140, Aarhus C, DK-8000, Denmark.

Department of Physics and Astronomy, Brigham Young University, N283 ESC, Provo, Utah 84602, USA.

出版信息

IUCrJ. 2021 Jan 1;8(Pt 1):33-45. doi: 10.1107/S2052252520013585.

Abstract

Spinel iron oxide nanoparticles of different mean sizes in the range 10-25 nm have been prepared by surfactant-free up-scalable near- and super-critical hydro-thermal synthesis pathways and characterized using a wide range of advanced structural characterization methods to provide a highly detailed structural description. The atomic structure is examined by combined Rietveld analysis of synchrotron powder X-ray diffraction (PXRD) data and time-of-flight neutron powder-diffraction (NPD) data. The local atomic ordering is further analysed by pair distribution function (PDF) analysis of both X-ray and neutron total-scattering data. It is observed that a non-stoichiometric structural model based on a tetragonal γ-FeO phase with vacancy ordering in the structure (space group 422) yields the best fit to the PXRD and total-scattering data. Detailed peak-profile analysis reveals a shorter coherence length for the superstructure, which may be attributed to the vacancy-ordered domains being smaller than the size of the crystallites and/or the presence of anti-phase boundaries, faulting or other disorder effects. The intermediate stoichiometry between that of γ-FeO and FeO is confirmed by refinement of the Fe/O stoichiometry in the scattering data and quantitative analysis of Mössbauer spectra. The structural characterization is complemented by nano/micro-structural analysis using transmission electron microscopy (TEM), elemental mapping using scanning TEM, energy-dispersive X-ray spectroscopy and the measurement of macroscopic magnetic properties using vibrating sample magnetometry. Notably, no evidence is found of a FeO/γ-FeO core-shell nanostructure being present, which had previously been suggested for non-stoichiometric spinel iron oxide nanoparticles. Finally, the study is concluded using the magnetic PDF (mPDF) method to model the neutron total-scattering data and determine the local magnetic ordering and magnetic domain sizes in the iron oxide nanoparticles. The mPDF data analysis reveals ferrimagnetic collinear ordering of the spins in the structure and the magnetic domain sizes to be ∼60-70% of the total nanoparticle sizes. The present study is the first in which mPDF analysis has been applied to magnetic nanoparticles, establishing a successful precedent for future studies of magnetic nanoparticles using this technique.

摘要

通过无表面活性剂的可扩大规模的近临界和超临界水热合成途径制备了平均尺寸在10 - 25 nm范围内的不同尖晶石型氧化铁纳米颗粒,并使用多种先进的结构表征方法对其进行了表征,以提供高度详细的结构描述。通过对同步辐射粉末X射线衍射(PXRD)数据和飞行时间中子粉末衍射(NPD)数据进行联合Rietveld分析来研究原子结构。通过对X射线和中子全散射数据进行对分布函数(PDF)分析,进一步分析局部原子有序性。观察到基于四方γ-FeO相且结构中存在空位有序的非化学计量结构模型(空间群422)对PXRD和全散射数据的拟合效果最佳。详细的峰形分析表明,超结构的相干长度较短,这可能归因于空位有序畴小于微晶尺寸和/或存在反相边界、位错或其他无序效应。通过对散射数据中的Fe/O化学计量进行精修以及对穆斯堡尔谱进行定量分析,证实了γ-FeO和FeO之间的中间化学计量。使用透射电子显微镜(TEM)进行纳米/微观结构分析、使用扫描TEM进行元素映射、能量色散X射线光谱以及使用振动样品磁强计测量宏观磁性,对结构表征进行了补充。值得注意的是,未发现存在先前针对非化学计量尖晶石型氧化铁纳米颗粒所提出的FeO/γ-FeO核壳纳米结构的证据。最后,使用磁PDF(mPDF)方法对中子全散射数据进行建模,并确定氧化铁纳米颗粒中的局部磁有序和磁畴尺寸,从而完成了该研究。mPDF数据分析揭示了结构中自旋的亚铁磁共线有序,并且磁畴尺寸约为纳米颗粒总尺寸的60 - 70%。本研究是首次将mPDF分析应用于磁性纳米颗粒,为未来使用该技术研究磁性纳米颗粒建立了成功的先例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f5dd/7792993/643bda6c738a/m-08-00033-fig1.jpg

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