Reducing the particle size of hexagonal ferrites is known to increase their coercivity effectively. However, the size reduction also enhances the agglomeration that deteriorates the magnetic alignment of these particles. In this paper, hexagonal plate shape strontium ferrite particles with an average size of 700 nm using a facile salt-assisted ultrasonic spray pyrolysis method were synthesized to increase the coercivity and prevent the agglomeration during calcinations process. Sodium chloride (NaCl) was used as a salt, and the reacted powders were sintered at 1050 degrees C for 2 h under various oxygen flow rates. With increasing the flow rate of oxygen, the specific saturation magnetization of synthesized strontium ferrite particles incre...
Single phase Sr-M ferrite fine particles were prepared by the chemical coprecipitation and subsequen...
International audienceHard magnetic materials a b s t r a c t Strontium hexaferrite nanoparticles we...
International audienceHard magnetic materials a b s t r a c t Strontium hexaferrite nanoparticles we...
Reducing the particle size of hexagonal ferrites is known to increase their coercivity effectively. ...
Strontium ferrite (hexaferrite), SrFe12O19, was successfully fabricated in sizes ranging from hundre...
Strontium hexaferrite (SrFe12O19, SrM) suitable for high-performance permanent magnet applications w...
The purpose of the research was to improve the intrinsic magnetic properties of strontium ferrite by...
The purpose of the research was to improve the intrinsic magnetic properties of strontium ferrite by...
The coercivity and the remanence of sintered M-type ferrites are highly dependent on the microstruct...
The magnetic properties of ferrite powders are known to be strongly dependent on their morphologies,...
Nanocrystalline strontium hexaferrite (SrFe12O19) powders have been successfully synthesized using f...
Strontium ferrite (SrFe(12)O(19)) particles were prepared by co-precipitation method. The ferrite pr...
Fine strontium hexaferrite particles were prepared by the low temperature auto-combustion method. Aq...
Strontium hexaferrite nanocrystalline powders were synthesized using a citrate combustion method and...
Single phase Sr-M ferrite fine particles were prepared by the chemical coprecipitation and subsequen...
Single phase Sr-M ferrite fine particles were prepared by the chemical coprecipitation and subsequen...
International audienceHard magnetic materials a b s t r a c t Strontium hexaferrite nanoparticles we...
International audienceHard magnetic materials a b s t r a c t Strontium hexaferrite nanoparticles we...
Reducing the particle size of hexagonal ferrites is known to increase their coercivity effectively. ...
Strontium ferrite (hexaferrite), SrFe12O19, was successfully fabricated in sizes ranging from hundre...
Strontium hexaferrite (SrFe12O19, SrM) suitable for high-performance permanent magnet applications w...
The purpose of the research was to improve the intrinsic magnetic properties of strontium ferrite by...
The purpose of the research was to improve the intrinsic magnetic properties of strontium ferrite by...
The coercivity and the remanence of sintered M-type ferrites are highly dependent on the microstruct...
The magnetic properties of ferrite powders are known to be strongly dependent on their morphologies,...
Nanocrystalline strontium hexaferrite (SrFe12O19) powders have been successfully synthesized using f...
Strontium ferrite (SrFe(12)O(19)) particles were prepared by co-precipitation method. The ferrite pr...
Fine strontium hexaferrite particles were prepared by the low temperature auto-combustion method. Aq...
Strontium hexaferrite nanocrystalline powders were synthesized using a citrate combustion method and...
Single phase Sr-M ferrite fine particles were prepared by the chemical coprecipitation and subsequen...
Single phase Sr-M ferrite fine particles were prepared by the chemical coprecipitation and subsequen...
International audienceHard magnetic materials a b s t r a c t Strontium hexaferrite nanoparticles we...
International audienceHard magnetic materials a b s t r a c t Strontium hexaferrite nanoparticles we...