The fct L10-FeNi alloy is a promising candidate for the development of high performance criticalelements- free magnetic materials. Among the different materials, the Au-Cu-Ni alloy has resulted very promising; however, a detailed investigation of the effect of the buffer-layer composition on the formation of the hard FeNi phase is still missing. To accelerate the search of the best Au-Cu-Ni composition, a combinatorial approach based on High-Throughput (HT) experimental methods has been exploited in this paper. HT magnetic characterization methods revealed the presence of a hard magnetic phase with an out-of-plane easy-axis, whose coercivity increases from 0.49 kOe up to 1.30 kOe as the Au content of the Cu-Au-Ni buffer-layer decreas...
This paper discusses the search of an FeNi25-based alloy with a face-centered cubic crystal structur...
We use first-principles calculations to investigate how deviations from perfect chemical order affec...
Abstract: In this paper, we investigate the potential of tetragonal L1 0 -ordered FeNi as the candi...
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...
Conventional permanent magnets that exhibit high-saturation magnetizations and coercivities contain ...
We have investigated the effect of an expansion of the lattice parameter on the magnetic properties ...
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...
The microstructure of newly developed hard magnetic Fe42Ni41.3SixB12-xP4Cu0.7 (x = 2 to 8 at%) nanoc...
We have investigated the effect of an expansion of the lattice parameter on the magnetic properties ...
Dans ce travail, nous montrons que des films minces FexNi1-xPt de structure L10 peuvent être obtenu...
The microstructure of newly developed hard magnetic Fe₄₂Ni₄₁.₃SixB₁₂-xP₄Cu₀.₇ (x = 2 to 8 at%) nanoc...
In this work structure-phase state and magnetic resistance investigation of Ni/Au/Ni film systems wa...
We report on the results of a systematic ab initio study of the magnetic structure of Fe rich fcc Fe...
This paper discusses the search of an FeNi25-based alloy with a face-centered cubic crystal structur...
We use first-principles calculations to investigate how deviations from perfect chemical order affec...
Abstract: In this paper, we investigate the potential of tetragonal L1 0 -ordered FeNi as the candi...
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...
Conventional permanent magnets that exhibit high-saturation magnetizations and coercivities contain ...
We have investigated the effect of an expansion of the lattice parameter on the magnetic properties ...
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...
The microstructure of newly developed hard magnetic Fe42Ni41.3SixB12-xP4Cu0.7 (x = 2 to 8 at%) nanoc...
We have investigated the effect of an expansion of the lattice parameter on the magnetic properties ...
Dans ce travail, nous montrons que des films minces FexNi1-xPt de structure L10 peuvent être obtenu...
The microstructure of newly developed hard magnetic Fe₄₂Ni₄₁.₃SixB₁₂-xP₄Cu₀.₇ (x = 2 to 8 at%) nanoc...
In this work structure-phase state and magnetic resistance investigation of Ni/Au/Ni film systems wa...
We report on the results of a systematic ab initio study of the magnetic structure of Fe rich fcc Fe...
This paper discusses the search of an FeNi25-based alloy with a face-centered cubic crystal structur...
We use first-principles calculations to investigate how deviations from perfect chemical order affec...
Abstract: In this paper, we investigate the potential of tetragonal L1 0 -ordered FeNi as the candi...