The influence of the milling conditions on the nano-scale MnFe(P,Si) particles obtained by surfactant-assisted high-energy ball milling has been investigated by X-ray diffraction (XRD) and magnetic measurements. The presence of surfactant oleic acid prevents the re-welding of crushed particles and enhances the dispersion of nanoparticles in the solvent during the ball milling. The XRD peak intensities decrease and the peaks broaden with increasing milling time, indicating a decrease in grain size. For increasing milling time, the spontaneous magnetization becomes lower and the thermal hysteresis becomes smaller. The surfactant concentration does not have a strong impact on the magnetic properties of the obtained nanoparticles, which is cons...
Surfactant assisted ball milling (SABM) has been shown to be a promising method for preparing rare e...
Hard magnetic Sm2Fe17Nx nanoflakes were prepared by surfactant assisted ball milling (SABM) at low t...
Magnetically hard Sm2(Co0.8Fe0.2)17 and SmCo5 nanoparticles have been produced by using surfactant-a...
The influence of the milling conditions on the nano-scale MnFe(P,Si) particles obtained by surfactan...
AbstractThe influence of the milling conditions on the nano-scale MnFe(P,Si) particles obtained by s...
AbstractThe influence of the milling conditions on the nano-scale MnFe(P,Si) particles obtained by s...
In this study, we discuss the effect of different milling parameters, such as the type and concentra...
In this study, we discuss the effect of different milling parameters, such as the type and concentra...
The unlimited applications of nanoparticles in human life are increasing day by day. Nanoparticles h...
Hard magnetic NdFeB submicron and nanoflakes were successfully prepared by surfactant-assisted ball ...
Mechanical alloying/milling technique is characterized by the repeated welding and fracturing of pow...
Mechanical alloying/milling technique is characterized by the repeated welding and fracturing of pow...
Structural changes in the nanocrystalline magnetite induced by mechanical milling were studied by me...
Anisotropic Sm-Fe-N submicron particles were synthesized by a surfactant-assisted ball milling in th...
Anisotropic Sm2Fe17Nx nanoflakes with high performance were successfully prepared via surfactant-ass...
Surfactant assisted ball milling (SABM) has been shown to be a promising method for preparing rare e...
Hard magnetic Sm2Fe17Nx nanoflakes were prepared by surfactant assisted ball milling (SABM) at low t...
Magnetically hard Sm2(Co0.8Fe0.2)17 and SmCo5 nanoparticles have been produced by using surfactant-a...
The influence of the milling conditions on the nano-scale MnFe(P,Si) particles obtained by surfactan...
AbstractThe influence of the milling conditions on the nano-scale MnFe(P,Si) particles obtained by s...
AbstractThe influence of the milling conditions on the nano-scale MnFe(P,Si) particles obtained by s...
In this study, we discuss the effect of different milling parameters, such as the type and concentra...
In this study, we discuss the effect of different milling parameters, such as the type and concentra...
The unlimited applications of nanoparticles in human life are increasing day by day. Nanoparticles h...
Hard magnetic NdFeB submicron and nanoflakes were successfully prepared by surfactant-assisted ball ...
Mechanical alloying/milling technique is characterized by the repeated welding and fracturing of pow...
Mechanical alloying/milling technique is characterized by the repeated welding and fracturing of pow...
Structural changes in the nanocrystalline magnetite induced by mechanical milling were studied by me...
Anisotropic Sm-Fe-N submicron particles were synthesized by a surfactant-assisted ball milling in th...
Anisotropic Sm2Fe17Nx nanoflakes with high performance were successfully prepared via surfactant-ass...
Surfactant assisted ball milling (SABM) has been shown to be a promising method for preparing rare e...
Hard magnetic Sm2Fe17Nx nanoflakes were prepared by surfactant assisted ball milling (SABM) at low t...
Magnetically hard Sm2(Co0.8Fe0.2)17 and SmCo5 nanoparticles have been produced by using surfactant-a...