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Published in: Journal of Materials Science: Materials in Electronics 13/2020

11-05-2020

Biosynthesis and characterization of CaZrO3 nanoparticles via hyphaene thebaica: effect of preparation method on morphology, electrical, and dielectric properties

Authors: Khaoula Hkiri, Hamza Elsayed Ahmed Mohamed, Mohamed Ben Salem, Abdsalem Kouki, Malik Maaza, Mouldi Zouaoui

Published in: Journal of Materials Science: Materials in Electronics | Issue 13/2020

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Abstract

CaZrO3 nanoparticles were synthesized by biosynthesis process via Hyphaene thebaica natural extract as a reducing and stabilizing agent. The crystalline structure and vibration modes of CaZrO3 were investigated by X-ray diffraction and Raman spectroscopy. Their optical properties were studied using ultraviolet–visible diffused reflectance spectroscopy and photoluminescence spectroscopy. In order to study the effect of the synthesis method and the reduction of the grain size on the morphology and the electrical and dielectric properties of the material, the results obtained for CaZrO3 synthesized by the biosynthesis process were compared to those obtained for CaZrO3 prepared by the conventional solid-state method. Transmission electron microscopy shows a marked improvement in the morphology of the compound synthesized by the biosynthesis process compared to that prepared by the solid-state reaction. The ionic conductivity of both samples was measured using the electrochemical impedance technique. It was found that the contribution of grain boundary resistance to total resistance has increased significantly with size reduction and led to the improvement of the dielectric properties of the material by the increase of dielectric constant and the decrease of dielectric loss.

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Metadata
Title
Biosynthesis and characterization of CaZrO3 nanoparticles via hyphaene thebaica: effect of preparation method on morphology, electrical, and dielectric properties
Authors
Khaoula Hkiri
Hamza Elsayed Ahmed Mohamed
Mohamed Ben Salem
Abdsalem Kouki
Malik Maaza
Mouldi Zouaoui
Publication date
11-05-2020
Publisher
Springer US
Published in
Journal of Materials Science: Materials in Electronics / Issue 13/2020
Print ISSN: 0957-4522
Electronic ISSN: 1573-482X
DOI
https://doi.org/10.1007/s10854-020-03546-w

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