The stability of (Crx,V1-x)2AlC MAX phases, materials of interest for a variety of magnetic as well as higherature applications, has been studied using density-functional-theory first-principles calculations. The enthalpy of mixing predicts these alloys to be unstable towards unmixing at 0 K. The calculations also predict, however, that these phases would be thermally stabilized by configurational entropy at temperatures well below the values used for synthesis. The temperature Ts below which they become unstable is found to be quite sensitive to the presence of magnetic moments on Cr ions, as well as to the material's magnetic order, in addition to chemical order and composition. Allowing for magnetism, the value of Ts for (Cr0.5,V0.5)2AlC...
Two-dimensional chromium ditelluride (CrTe2) is a promising ferromagnetic layered material that exhi...
We present a comprehensive computational and experimental examination of the Cr1−xVxO2 (0≤x≤0.5) sys...
High entropy alloys based on 3d transition metals display rich and promising magnetic characteristic...
The stability of (Crx,V1-x)2AlC MAX phases, materials of interest for a variety of magnetic as well ...
Based on high throughput density functional theory calculations, we evaluated systematically the sta...
We systematically perform density-functional theory (DFT) calculations for all possible Mn+1AXn (MAX...
The effect of magnetism on the bulk modulus (B0) of M2AlC (M = Ti, V, and Cr) has been studied usin...
We review recent developments in the field of first-principles simulations of magnetic materials abo...
We combine predictive ab initio calculations with experimental verification of bulk materials synthe...
In order to investigate the stability of the cubic phase of Cr1−xAlxN at high AlN content, first pri...
Physical properties of ten single-phase FCC CrxMn20Fe20Co20Ni40-x high-entropy alloys (HEAs) were in...
The understanding of finite temperature behavior of magnetic materials is of vital importance for sp...
We present an analysis of temperature-dependent atomic short-range ordering and phase stability of t...
High-entropy alloys (HEAs) represent a special group of solid solutions containing five or more prin...
Using a synergistic combination of experimental and computational methods, we shed light on the unus...
Two-dimensional chromium ditelluride (CrTe2) is a promising ferromagnetic layered material that exhi...
We present a comprehensive computational and experimental examination of the Cr1−xVxO2 (0≤x≤0.5) sys...
High entropy alloys based on 3d transition metals display rich and promising magnetic characteristic...
The stability of (Crx,V1-x)2AlC MAX phases, materials of interest for a variety of magnetic as well ...
Based on high throughput density functional theory calculations, we evaluated systematically the sta...
We systematically perform density-functional theory (DFT) calculations for all possible Mn+1AXn (MAX...
The effect of magnetism on the bulk modulus (B0) of M2AlC (M = Ti, V, and Cr) has been studied usin...
We review recent developments in the field of first-principles simulations of magnetic materials abo...
We combine predictive ab initio calculations with experimental verification of bulk materials synthe...
In order to investigate the stability of the cubic phase of Cr1−xAlxN at high AlN content, first pri...
Physical properties of ten single-phase FCC CrxMn20Fe20Co20Ni40-x high-entropy alloys (HEAs) were in...
The understanding of finite temperature behavior of magnetic materials is of vital importance for sp...
We present an analysis of temperature-dependent atomic short-range ordering and phase stability of t...
High-entropy alloys (HEAs) represent a special group of solid solutions containing five or more prin...
Using a synergistic combination of experimental and computational methods, we shed light on the unus...
Two-dimensional chromium ditelluride (CrTe2) is a promising ferromagnetic layered material that exhi...
We present a comprehensive computational and experimental examination of the Cr1−xVxO2 (0≤x≤0.5) sys...
High entropy alloys based on 3d transition metals display rich and promising magnetic characteristic...