4.6 Article

Sol-Gel Synthesis of the Double Perovskite Sr2FeMoO6 by Microwave Technique

期刊

MATERIALS
卷 14, 期 14, 页码 -

出版社

MDPI
DOI: 10.3390/ma14143876

关键词

structural ordering; microwave heating; curie temperature; hydrothermal; crystal size

资金

  1. CONACYT [705989, 252677]
  2. Universidad Nacional Autonoma de Mexico [PAPIIT-IN104616]
  3. Programa para el Desarrollo Profesional Docente, para el Tipo Superior (PRODEP)
  4. Universidad Autonoma de Queretaro grant [UAQ-PTC-339, FONDEC-UAQ FCQ202002]

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The study compared the effects of hydrothermal synthesis with and without microwave radiation on double perovskite Sr2FeMoO6, finding that microwave radiation enhances synthesis efficiency, reduces particle size, and maintains good crystallinity.
The effect of microwave radiation on the hydrothermal synthesis of the double perovskite Sr2FeMoO6 has been studied based on a comparison of the particle size and structural characteristics of products from both methods. A temperature, pressure, and pH condition screening was performed, and the most representative results of these are herein presented and discussed. Radiation of microwaves in the hydrothermal synthesis method led to a decrease in crystallite size, which is an effect from the reaction temperature. The particle size ranged from 378 to 318 nm when pH was 4.5 and pressure was kept under 40 bars. According to X-ray diffraction (XRD) results coupled with the size-strain plot method, the product obtained by both synthesis methods (with and without microwave radiation) have similar crystal purity. The Scanning Electron Microscopy (SEM) and Energy Dispersive X-ray Spectroscopy (EDS) techniques showed that the morphology and the distribution of metal ions are uniform. The Curie temperature obtained by thermogravimetric analysis indicates that, in the presence of microwaves, the value was higher with respect to traditional synthesis from 335 K to 342.5 K. Consequently, microwave radiation enhances the diffusion and nucleation process of ionic precursors during the synthesis, which promotes a uniform heating in the reaction mixture leading to a reduction in the particle size, but keeping good crystallinity of the double perovskite. Precursor phases and the final purity of the Sr2FeMoO6 powder can be controlled via hydrothermal microwave heating on the first stages of the Sol-Gel method.

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