random selection: Y-Co (18 entries found)
Displaying 8 entries out of 8 entries found.
Crystallographic data Sstructural stability [Footnotes] Magnetic properties [Footnotes, magnetic units] Methods References
Materials ID Formula Formula units per cell Atomic sites per cell Crystal system Space group [Number] Formation energy (eV/atom) Energy relative to convex hull (eV/atom) Structure search Averaged magnetic moment (μB/atom) Magnetic polarization, Js (T) Magnetic easy axis Magnetic anisotropy constants:
Ka-c, Kb-c, Kb-a, Kd-a (MJ/m3)
Curie temperature, TC (K) Methods References
MMD-1041 Cr3Fe 4 16 cubic Fm-3m [225] 0.110 0.110 MP 0.48 0.48 . . . . . . DFT mp-1008282
MMD-1042 Cr3Fe 1 4 cubic Pm-3m [221] 0.243 0.243 MP 0.02 0.02 . . . . . . DFT mp-1008285
MMD-1046 Cr3Fe 2 8 tetragonal I4/mmm [139] 0.250 0.250 MP 0.13 0.14 . . . . . . DFT mp-1017511
MMD-1047 CrFe3 4 16 cubic Fm-3m [225] 0.052 0.052 MP 1.37 1.40 . . . . . . DFT mp-1018067
MMD-1049 CrFe3 1 4 cubic Pm-3m [221] 0.037 0.037 MP 0.70 0.72 . . . . . . DFT mp-1018081
MMD-1056 Cr2Fe 8 24 cubic Fd-3m [227] 0.273 0.273 MP 0.58 0.57 . . . . . . DFT mp-1077708
MMD-1153 CrFe 2 4 orthorhombic Cmmm [65] 0.076 0.076 MP 0.93 0.94 . . . . . . DFT mp-1226211
MMD-1154 CrFe4 4 20 orthorhombic Fmmm [69] 0.013 0.013 MP 1.68 1.71 . . . . . . DFT mp-1226230

Footnotes:
  1. Formation energy:
    We perform DFT calculations to calculate the total enegies of all the structures. The formation energy is computed with respect to a linear combination of the total energies of reference elemental phases. When the formation energies are plotted as a function of chemical composition, a set of stable compounds forms a convex hull, which represents a boundary (theoretical lower limit) in a compositional phase diagram. Metastable compounds lie above the hull, and the energy relative to the hull (distance to the hull) is a useful quantity to examine the metastability of a new compound. The lower the formation energy above the convex hull, the more likely it is for the material to exist.
  2. Magnetic anisotropy constants:
    Magnetic anisotropy constant, Ka-c, is defined as Ka-c = Ea-Ec, where Ea and Ec are the total energies per volume for the magnetization oriented along the crystallographic a and c axes, respectively. Similarly, Kb-c and Kb-a are defined as Kb-c = Eb-Ec and Kb-a = Eb-Ea, respectively. For cubic crystal systems, magnetic anisotropy constant is calculated as Kd-a = Ed-Ea, where Ed is the total energy per volume for the magnetization oriented along the body-diagonal direction of the unit cell.

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