La1-xSrxFe1-yCuyO3±w (x=0, 0.2; y=0, 0.2) nanoparticles have been prepared by solution combustion synthesis exploiting both conventional and microwave heating in the ignition of the self-sustaining reactions. Interaction of microwaves with the reaction mixture allowed significant reduction of the ignition time according to the dielectric properties of the precursor gels, which have been measured at room temperature in the 0.5-3 GHz frequency range. Both the ignition strategies led to the preparation of crystalline single-phase products without affecting particles morphology. The ignition technique influenced only the average particles size with those prepared by microwaves-ignition, possessing typically larger dimension, as a probable consequence of the higher temperatures reached due to microwave absorbing products. Perfectly crystallised nanoparticles were obtained after combustion syntheses and calcination at 600 °C for 3 h in the particle size range between 20 and 80 nm dependently upon the heating source and the dopant level.

Solution combustion synthesis of La1-xSrxFe1-yCuyO3±w (x=0, 0.2; Y=0, 0.2) perovskite nanoparticles: Conventional vs. microwaves ignition / Rosa, R., Ponzoni, C., Veronesi, P., Natali Sora, I., Felice, V., Leonelli, C.. - In: CERAMICS INTERNATIONAL. - ISSN 0272-8842. - ELETTRONICO. - 41:6(2015), pp. 7803-7810. [10.1016/j.ceramint.2015.02.114]

Solution combustion synthesis of La1-xSrxFe1-yCuyO3±w (x=0, 0.2; Y=0, 0.2) perovskite nanoparticles: Conventional vs. microwaves ignition

ROSA, Roberto;PONZONI, Chiara;VERONESI, Paolo;LEONELLI, Cristina
2015

Abstract

La1-xSrxFe1-yCuyO3±w (x=0, 0.2; y=0, 0.2) nanoparticles have been prepared by solution combustion synthesis exploiting both conventional and microwave heating in the ignition of the self-sustaining reactions. Interaction of microwaves with the reaction mixture allowed significant reduction of the ignition time according to the dielectric properties of the precursor gels, which have been measured at room temperature in the 0.5-3 GHz frequency range. Both the ignition strategies led to the preparation of crystalline single-phase products without affecting particles morphology. The ignition technique influenced only the average particles size with those prepared by microwaves-ignition, possessing typically larger dimension, as a probable consequence of the higher temperatures reached due to microwave absorbing products. Perfectly crystallised nanoparticles were obtained after combustion syntheses and calcination at 600 °C for 3 h in the particle size range between 20 and 80 nm dependently upon the heating source and the dopant level.
2015
no
Inglese
41
6
7803
7810
http://www.sciencedirect.com/science/article/pii/S0272884215003338
A. Microwave processing; A. Powders: chemical preparation B.; D. Perovskites; Electron microscopy; Ceramics and Composites; Process Chemistry and Technology; Electronic, Optical and Magnetic Materials; Surfaces, Coatings and Films; Materials Chemistry2506 Metals and Alloys
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Solution combustion synthesis of La1-xSrxFe1-yCuyO3±w (x=0, 0.2; Y=0, 0.2) perovskite nanoparticles: Conventional vs. microwaves ignition / Rosa, R., Ponzoni, C., Veronesi, P., Natali Sora, I., Felice, V., Leonelli, C.. - In: CERAMICS INTERNATIONAL. - ISSN 0272-8842. - ELETTRONICO. - 41:6(2015), pp. 7803-7810. [10.1016/j.ceramint.2015.02.114]
Rosa, Roberto; Ponzoni, Chiara; Veronesi, Paolo; Natali Sora, Isabella; Felice, Valeria; Leonelli, Cristina
6
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1076875
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