Improving of structural, conduction mechanisms, dielectric, optical properties of the sol–gel produced half-doped La0.5Ba0.5CrO3 perovskite for electronics devices, non-linear optical and optoelectronic applicationsImproving of structural, conduction mechanisms, dielectric, optical properties of the sol–gel produced half-doped La0.5Ba0.5CrO3 perovskite for electronics devices, non-linear optical and optoelectronic applicationsF. Hcini et al.

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作者
Fakher Hcini [1 ]
Jabeur Khelifi [2 ]
Kamel Khirouni [1 ]
机构
[1] University of Gabes,Advanced Materials, Applied Mechanics, Innovative Processes and Environment Research Unit, Higher Institute of Applied Sciences and Technology of Gabes (ISSATG)
[2] University Campus Agricultural City,Laboratory of Advanced Multifunctional Materials and Technological Applications, Faculty of Science and Technology of Sidi Bouzid
[3] University of Kairouan,Laboratory of Physics of Materials and Nanomaterials Applied to the Environment (LaPhyMNE), Faculty of Sciences of Gabès Cited Erriadh
[4] University of Gabès,undefined
关键词
La; Ba; CrO; chromite; Dielectric measurement; Non-linear Optical parameters; Sol–gel; Microwave devices;
D O I
10.1007/s00339-025-08612-w
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摘要
The objective of this work is to investigate the structural, optical, electrical, magnetic and dielectric properties of the sol–gel produced half-doped La0.5Ba0.5CrO3 perovskite. Rietveld analysis of X-ray diffraction measurement confirms its orthorhombic structure with the Pnma space group. The pattern reveals uniform crystallization of the produced powder, demonstrating a pure phase with no additional phases. It is apparent that the crystalline grain size grows when adding Ba2+ ion into the parent LaCrO3 sample. Besides, the Eg value of La0.5Ba0.5CrO3 sample is lower compared to the parent LaCrO3 perovskite. It is apparent that the incorporation of Ba+2 element in LaCrO3 sample clearly lowers its band gap energy, which improved its optoelectronic properties. Based to the experimental refractive index, numerous theoretical optical characteristics like reflection loss (RL), molar refractive index (Rm), molar electronic polarizability (αm), and the non-linear optical features were examined for our sample. We employ an altered conduction relation referenced by Jonscher, to analyses the σ(f, T) data for our sample. It is found that our compound presents significant electrical resistivity, this renders them useful for microwave applications that needed minimal eddy currents. The investigation of electronic transport properties revealed a semiconductor behavior in the specimen, aligning with the correlated barrier hopping mechanism (CBH) and the Non-Overlapping Small Polaron Tunneling (NSPT) model.
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