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铝取代的M型锶铁氧体SrFeAl₁₂O₁₉纳米颗粒的合成、晶体结构、占位情况及磁性能

Synthesis, Crystal Structure, Site Occupancy, and Magnetic Properties of Aluminum-Substituted M‑Type Sr Hexaferrite SrFeAl O Nanoparticles.

作者信息

Saura-Múzquiz Matilde, Eikeland Anna Zink, Stingaciu Marian, Andersen Henrik Lyder, Avdeev Maxim, Christensen Mogens

机构信息

Departamento de Física de Materiales, Faculty of Physics, Universidad Complutense de Madrid, Plaza de Ciencias 1, Ciudad Universitaria, Madrid 28040, Spain.

Center for Materials Crystallography, Department of Chemistry and iNANO, Aarhus University, Langelandsgade 140, Aarhus C 8000, Denmark.

出版信息

Chem Mater. 2025 Jan 20;37(3):884-896. doi: 10.1021/acs.chemmater.4c02205. eCollection 2025 Feb 11.

Abstract

The synthesis of aluminum-substituted strontium hexaferrite nanoparticles (SrFe Al O with = 0-3), via three different preparation methods, is investigated. The synthesis methods are hydrothermal autoclave (AC) synthesis, a citrate sol-gel (SG) synthesis, and a solid-salt matrix (SSM) synthesis. Evaluation of macroscopic magnetic properties and of lattice parameters obtained by Rietveld analysis of powder X-ray diffraction (PXRD) data indicate that successful substitution of Al into the crystal structure is only achieved for the SG method. For the SG sample with = 3, the coercivity was found to increase by 73% to 830 kA/m, while the saturation magnetization was reduced by 68% to 22.6 Am/kg compared to the nonsubstituted = 0 SG sample. The SSM and AC samples did not show any significant changes in their magnetic properties. To examine the nature of the Al insertion in detail, neutron powder diffraction (NPD) data were collected on the SSM and SG samples. Combined Rietveld refinements of the PXRD and NPD data confirm that effective substitution of the Al ions is only achieved for the SG sample and reveal that Al occupies mainly the (2) and (12) sites and to a lesser extent the (4), (4) and (4) sites. Moreover, the relative degree of site occupation varies with increasing Al substitution. The intrinsic magnetization according to the refined atomic magnetic moments and Al site occupation fractions was extracted from the NPD data and compared with the measured macroscopic magnetization. A remarkable agreement exists between the two, confirming the robustness and accuracy of the Rietveld analysis.

摘要

研究了通过三种不同制备方法合成铝取代的六铁酸锶纳米颗粒((SrFe_{12 - x}Al_xO_{19}),(x = 0 - 3))。合成方法包括水热高压釜(AC)合成、柠檬酸盐溶胶 - 凝胶(SG)合成和固体盐基质(SSM)合成。通过对粉末X射线衍射(PXRD)数据进行Rietveld分析获得的宏观磁性能和晶格参数评估表明,仅SG方法成功地将Al取代到晶体结构中。对于(x = 3)的SG样品,与未取代的(x = 0)的SG样品相比,矫顽力增加了73%,达到830 kA/m,而饱和磁化强度降低了68%,降至22.6 Am/kg。SSM和AC样品的磁性能没有显示出任何显著变化。为了详细研究Al的插入性质,对SSM和SG样品收集了中子粉末衍射(NPD)数据。PXRD和NPD数据的联合Rietveld精修证实,仅SG样品实现了Al离子的有效取代,并揭示Al主要占据(2)和(12)位点,在较小程度上占据(4)、(4)和(4)位点。此外,位点占据的相对程度随Al取代量的增加而变化。根据精修的原子磁矩和Al位点占据分数从NPD数据中提取本征磁化强度,并与测量的宏观磁化强度进行比较。两者之间存在显著的一致性,证实了Rietveld分析的稳健性和准确性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97d5/12127982/ddca463a3567/cm4c02205_0001.jpg

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