The nanomultiferroic material which is synthesized in this research used sol-gel method. The research used weight ratio of BaTiO3: BiFeO3 of 2: 1. Gel formed after heating at 80-90°C was calcined at 350°C for 4 hours and then sintered at 700,750 and 800°C for 2, 4 and 6 hours respectively. Powder produced after sintering was characterized by X-Ray Diffraction (XRD) test using XRD Phillips PW 1835 type, 20°-100° diffraction angle and CuKα, electric polarization properties test and particle size measurement using Particle Size Analyzer of Beckman Coulter DelsaTM Nano instrument. From the characterization results, it is obtained that the dominant phase is Barium Bismuth Iron (III) Oxide (BaBiFe2O5). Electrical polarization properties such as r...
Abstract In this paper, a novel nanoporous barium tita-nate (BaTiO3) crystalline powder was synthesi...
We have reported the structural, thermal, microscopic, magnetization, polarization, and dielectric p...
The equipment of the Ural Center for Shared Use “Modern Nanotechnology” Ural Federal University was ...
The nanomultiferroic material which is synthesized in this research used sol-gel method. The researc...
Multiferroic compound (Bi0.9Pb0.1)(Fe0.9Ti0.1)O-3 (BPFTO), having particle size of 15-25 nm, was syn...
Bismuth ferrite (BiFeO3) is one of multiferroic material group, but it is difficult to produce BiFeO...
A new synthesis route with high energy ball milling and microwave sintering is used to obtain nanocr...
International audienceA one-pot polymerization method using citric acid and glucose for the synthesi...
In this dissertation, BaTiO3 nanocrystals, Bi4Ti3O12 nanostructured microspheres, and cosubstituted ...
AbstractBiFeO3-based nanopowders were prepared via a sol-gel method, in which the gel (with metal-ni...
The solid solutions ($BiFeO_{3})_{1-x}(BaTiO_{3})_{x}$ (x=0, 0.1, 0.2, 0.3, 0.4, and 0.5) have been ...
BaTiO3 (BTO) nanofibers were fabricated by sol-gel combined with electrospinning method. The effects...
Polycrystalline nano BiFeO3 powders were synthesized by auto-combustion method using urea as fuel an...
Phase-pure multiferroic bismuth ferrite (BFO) nanoparticles were synthesized by energy efficient, si...
Densed BiFeO3(BFO) ceramics were sintered by using soft chemical derived fine powders. The microstru...
Abstract In this paper, a novel nanoporous barium tita-nate (BaTiO3) crystalline powder was synthesi...
We have reported the structural, thermal, microscopic, magnetization, polarization, and dielectric p...
The equipment of the Ural Center for Shared Use “Modern Nanotechnology” Ural Federal University was ...
The nanomultiferroic material which is synthesized in this research used sol-gel method. The researc...
Multiferroic compound (Bi0.9Pb0.1)(Fe0.9Ti0.1)O-3 (BPFTO), having particle size of 15-25 nm, was syn...
Bismuth ferrite (BiFeO3) is one of multiferroic material group, but it is difficult to produce BiFeO...
A new synthesis route with high energy ball milling and microwave sintering is used to obtain nanocr...
International audienceA one-pot polymerization method using citric acid and glucose for the synthesi...
In this dissertation, BaTiO3 nanocrystals, Bi4Ti3O12 nanostructured microspheres, and cosubstituted ...
AbstractBiFeO3-based nanopowders were prepared via a sol-gel method, in which the gel (with metal-ni...
The solid solutions ($BiFeO_{3})_{1-x}(BaTiO_{3})_{x}$ (x=0, 0.1, 0.2, 0.3, 0.4, and 0.5) have been ...
BaTiO3 (BTO) nanofibers were fabricated by sol-gel combined with electrospinning method. The effects...
Polycrystalline nano BiFeO3 powders were synthesized by auto-combustion method using urea as fuel an...
Phase-pure multiferroic bismuth ferrite (BFO) nanoparticles were synthesized by energy efficient, si...
Densed BiFeO3(BFO) ceramics were sintered by using soft chemical derived fine powders. The microstru...
Abstract In this paper, a novel nanoporous barium tita-nate (BaTiO3) crystalline powder was synthesi...
We have reported the structural, thermal, microscopic, magnetization, polarization, and dielectric p...
The equipment of the Ural Center for Shared Use “Modern Nanotechnology” Ural Federal University was ...