In this study, nanosized La1-xCaxFeO3 (0.00≤x≤0.40) compounds prepared via sol-gel method followed by heat treatment at 1100oC for 24 hours are studied. Crystal structure, microstructure, surface morphology and temperature-dependent resistivity of the samples are investigated. TEM investigation reveals nanoparticles with an average size of 35nm produced from the sol-gel process. The crystal structure of the compounds belongs to an orthorhombically distorted perovskite structure with Pbnm space group. Lattice distortion and cation size mismatch increase with an increase in Ca and particle and grain growth are suppressed by Ca doping. Electrical conduction is explained via thermally activated hopping of small polarons. Unit cell volume, charg...
36-42Bi0.9-xLa0.1CaxFeO3 (x=0.05~0.25) nanoparticles were synthesized by an improved sol-gel techniq...
Structural evolution, electrical conductivity, oxygen nonstoichiometry and oxygen transport properti...
Nanosized LaFeO3 material was prepared by 3 methods: high energy milling, citrate gel, and coprecipi...
This thesis work preferentially aspires to tune the structural, magnetic and electrical properties o...
The study aims to investigate the structural and dielectric properties of perovskite La1−xSrxFeO3 (x...
Acceptor doping of oxides generally results in the formation of charge-compensating oxygen vacancies...
Acceptor doping of oxides generally results in the formation of charge-compensating oxygen vacancies...
Acceptor doping of oxides generally results in the formation of charge-compensating oxygen vacancies...
International audienceThe effect of hole doping on magnetic properties of LaFe0.5Mn0.5O3 have been i...
International audienceThe effect of hole doping on magnetic properties of LaFe0.5Mn0.5O3 have been i...
International audienceThe effect of hole doping on magnetic properties of LaFe0.5Mn0.5O3 have been i...
International audienceThe effect of hole doping on magnetic properties of LaFe0.5Mn0.5O3 have been i...
International audienceThe effect of hole doping on magnetic properties of LaFe0.5Mn0.5O3 have been i...
International audienceThe effect of hole doping on magnetic properties of LaFe0.5Mn0.5O3 have been i...
Structural evolution, electrical conductivity, oxygen nonstoichiometry and oxygen transport properti...
36-42Bi0.9-xLa0.1CaxFeO3 (x=0.05~0.25) nanoparticles were synthesized by an improved sol-gel techniq...
Structural evolution, electrical conductivity, oxygen nonstoichiometry and oxygen transport properti...
Nanosized LaFeO3 material was prepared by 3 methods: high energy milling, citrate gel, and coprecipi...
This thesis work preferentially aspires to tune the structural, magnetic and electrical properties o...
The study aims to investigate the structural and dielectric properties of perovskite La1−xSrxFeO3 (x...
Acceptor doping of oxides generally results in the formation of charge-compensating oxygen vacancies...
Acceptor doping of oxides generally results in the formation of charge-compensating oxygen vacancies...
Acceptor doping of oxides generally results in the formation of charge-compensating oxygen vacancies...
International audienceThe effect of hole doping on magnetic properties of LaFe0.5Mn0.5O3 have been i...
International audienceThe effect of hole doping on magnetic properties of LaFe0.5Mn0.5O3 have been i...
International audienceThe effect of hole doping on magnetic properties of LaFe0.5Mn0.5O3 have been i...
International audienceThe effect of hole doping on magnetic properties of LaFe0.5Mn0.5O3 have been i...
International audienceThe effect of hole doping on magnetic properties of LaFe0.5Mn0.5O3 have been i...
International audienceThe effect of hole doping on magnetic properties of LaFe0.5Mn0.5O3 have been i...
Structural evolution, electrical conductivity, oxygen nonstoichiometry and oxygen transport properti...
36-42Bi0.9-xLa0.1CaxFeO3 (x=0.05~0.25) nanoparticles were synthesized by an improved sol-gel techniq...
Structural evolution, electrical conductivity, oxygen nonstoichiometry and oxygen transport properti...
Nanosized LaFeO3 material was prepared by 3 methods: high energy milling, citrate gel, and coprecipi...