Conventional permanent magnets that exhibit high-saturation magnetizations and coercivities contain rare earth elements or noble metals, which renders them economically unsustainable. L10-FeNi alloy, which does not contain such elements, possesses excellent magnetic properties even at high temperatures. However, the coercivity of the fabricated alloy is much lower than its potential coercivity. In this study, to investigate the temperature dependence of L10-FeNi and its magnetic properties in the vicinity of the single magnetic domain size, L10-FeNi island structures were fabricated via sputter deposition of a FeNi alloy and subsequent application of the nitrogen insertion and topotactic extraction method. The crystallinity of FeNiN in the ...
In this work, we have deposited FeNi (60 nm) film on Si (111) substrate using electron beam evaporat...
Tetragonal (L10) FeNi is a promising material for high-performance rare-earth-free permanent magnets...
Tetragonal (L10) FeNi is a promising material for high-performance rare-earth-free permanent magnets...
Many physical properties, for example structural or magnetic, of a material are directly dependent o...
Many physical properties, for example structural or magnetic, of a material are directly dependent o...
Tetrataenite (L10-FeNi) is a promising candidate for use as a permanent magnet free of rare-earth el...
Abstract: In this paper, we investigate the potential of tetragonal L1 0 -ordered FeNi as the candi...
The fct L10-FeNi alloy is a promising candidate for the development of high performance criticalelem...
In the search for new rare earth free permanent magnetic materials, FeNi with a L1(0) structure is a...
In the search for new rare earth free permanent magnetic materials, FeNi with a L1(0) structure is a...
FeNiN thin films were synthesized on Si(100) substrates at room temperature by RF magnetron sputteri...
This paper presents a study of FeNi-based thin film materials deposited with Mo, Al and B using a co...
Fe 19Ni 81 films and Fe 19Ni 81/Ti-based nanostructures were prepared by rf-sputtering. The thicknes...
The microstructure of newly developed hard magnetic Fe42Ni41.3SixB12-xP4Cu0.7 (x = 2 to 8 at%) nanoc...
FeNi having the tetragonal L10 crystal structure is a promising new rare-earth-free permanent magnet...
In this work, we have deposited FeNi (60 nm) film on Si (111) substrate using electron beam evaporat...
Tetragonal (L10) FeNi is a promising material for high-performance rare-earth-free permanent magnets...
Tetragonal (L10) FeNi is a promising material for high-performance rare-earth-free permanent magnets...
Many physical properties, for example structural or magnetic, of a material are directly dependent o...
Many physical properties, for example structural or magnetic, of a material are directly dependent o...
Tetrataenite (L10-FeNi) is a promising candidate for use as a permanent magnet free of rare-earth el...
Abstract: In this paper, we investigate the potential of tetragonal L1 0 -ordered FeNi as the candi...
The fct L10-FeNi alloy is a promising candidate for the development of high performance criticalelem...
In the search for new rare earth free permanent magnetic materials, FeNi with a L1(0) structure is a...
In the search for new rare earth free permanent magnetic materials, FeNi with a L1(0) structure is a...
FeNiN thin films were synthesized on Si(100) substrates at room temperature by RF magnetron sputteri...
This paper presents a study of FeNi-based thin film materials deposited with Mo, Al and B using a co...
Fe 19Ni 81 films and Fe 19Ni 81/Ti-based nanostructures were prepared by rf-sputtering. The thicknes...
The microstructure of newly developed hard magnetic Fe42Ni41.3SixB12-xP4Cu0.7 (x = 2 to 8 at%) nanoc...
FeNi having the tetragonal L10 crystal structure is a promising new rare-earth-free permanent magnet...
In this work, we have deposited FeNi (60 nm) film on Si (111) substrate using electron beam evaporat...
Tetragonal (L10) FeNi is a promising material for high-performance rare-earth-free permanent magnets...
Tetragonal (L10) FeNi is a promising material for high-performance rare-earth-free permanent magnets...