Material:

Co8N

ID:

MMD-316

Explore database:

Compounds with the same formula: Co8N (35 entries found)
Compounds with the same elements: Co-N (183 entries found)

Navigation:
Space group | Lattice parameters | Thermodynamic properties | Phase diagram | Magnetic properties | Atomic positions and site-specific magnetic data | Pair-wise magnetic data | Methods | References

Space group:

Crystal system

monoclinic

Space group number

12

Hermann-Mauguin

C2/m

Hall

-C 2y

Point group

2/m

Structure data:

Normalized formula

Co8N

The number of formula units per unit cell

2

The total number of atoms per unit cell

18

The number of inequivalent sites per unit cell

4

Structure search

AGA search


Lattice parameters:

a (Å)

8.8401

b (Å)

5.0620

c (Å)

4.4140

α (deg.)

90.000

β (deg.)

69.865

γ (deg.)

90.000

Volume (Å3)

185.449

Density (g/cm3)

8.694

Crystal structure visualization:


Thermodynamic properties:

DFT calculations (details)

Formation energy (vs. elemental phases)

41.4 meV/atom

Formation energy above hull

41.4 meV/atom

Phase diagram:

Phase diagram

Related structures:

Compounds with the same formula: Co8N

35 entries found

Compounds with the same elements: Co-N

183 entries found


Magnetic properties:

DFT calculations (details)

Magnetic ordering

Ferromagnetic

Total magnetic moment

22.09 μB/cell

Averaged magnetic moment

1.23 μB/atom

Magnetic polarization, Js = μ0Ms

1.39 T (= 1106.1 emu/cm3)

LMTO-GF calculations (details)

Curie temperature, TC

DFT calculations (details)

Magnetic anisotropy constant, Ka-c

-0.53 MJ/m3 (= -0.62 meV/cell)

Magnetic anisotropy constant, Kb-c

-0.36 MJ/m3 (= -0.42 meV/cell)

Magnetic anisotropy constant, Kb-a

0.17 MJ/m3 (= 0.20 meV/cell)

Magnetic easy axis

a

Magnetic hardness parameter, κ

0.59


Atomic positions (fractional coordinates) and site-specific magnetic data:

index species w x y z m (μB) Esoc100 (meV) Esoc001 (meV)
1 N 2b 0.000000 0.500000 0.000000 -0.03 . .
2 N 2b 0.500000 0.000000 0.000000 -0.03 . .
3 Co 4i 0.365820 0.000000 0.752070 1.35 . .
4 Co 4i 0.634180 0.000000 0.247930 1.35 . .
5 Co 4i 0.865820 0.500000 0.752070 1.35 . .
6 Co 4i 0.134180 0.500000 0.247930 1.35 . .
7 Co 8j 0.370060 0.259990 0.259820 1.19 . .
8 Co 8j 0.629940 0.740010 0.740180 1.19 . .
9 Co 8j 0.629940 0.259990 0.740180 1.19 . .
10 Co 8j 0.370060 0.740010 0.259820 1.19 . .
11 Co 8j 0.870060 0.759990 0.259820 1.19 . .
12 Co 8j 0.129940 0.240010 0.740180 1.19 . .
13 Co 8j 0.129940 0.759990 0.740180 1.19 . .
14 Co 8j 0.870060 0.240010 0.259820 1.19 . .
15 Co 4i 0.121740 0.000000 0.262200 1.75 . .
16 Co 4i 0.878260 0.000000 0.737800 1.75 . .
17 Co 4i 0.621740 0.500000 0.262200 1.75 . .
18 Co 4i 0.378260 0.500000 0.737800 1.75 . .
w: site multiplicity (the number of equivalent positions) and Wyckoff letter (a label for site symmetry)
m: local magnetic moment
Esoc100 (001): Spin-orbit coupling energy for the magnetization oriented along the crystallographic a (c) axis
(Individual Esoc values are temporarily not available while we perform maintenance.)

Site-resolved magnetic moments:

Local magnetic moments

Pair-wise magnetic data:

site i site j distance (Å) Jij (meV)
1 N 2b 2 N 2b 5.09 .
1 N 2b 3 Co 4i 3.95 .
1 N 2b 4 Co 4i 3.95 .
1 N 2b 5 Co 4i 1.87 .
1 N 2b 6 Co 4i 1.87 .
1 N 2b 7 Co 8j 3.94 .
1 N 2b 8 Co 8j 3.94 .
1 N 2b 9 Co 8j 3.94 .
1 N 2b 10 Co 8j 3.94 .
1 N 2b 11 Co 8j 1.86 .
1 N 2b 12 Co 8j 1.86 .
1 N 2b 13 Co 8j 1.86 .
1 N 2b 14 Co 8j 1.86 .
1 N 2b 15 Co 4i 3.12 .
1 N 2b 16 Co 4i 3.12 .
1 N 2b 17 Co 4i 3.14 .
1 N 2b 18 Co 4i 3.14 .
2 N 2b 3 Co 4i 1.87 .
2 N 2b 4 Co 4i 1.87 .
2 N 2b 5 Co 4i 3.95 .
2 N 2b 6 Co 4i 3.95 .
2 N 2b 7 Co 8j 1.86 .
2 N 2b 8 Co 8j 1.86 .
2 N 2b 9 Co 8j 1.86 .
2 N 2b 10 Co 8j 1.86 .
2 N 2b 11 Co 8j 3.94 .
2 N 2b 12 Co 8j 3.94 .
2 N 2b 13 Co 8j 3.94 .
2 N 2b 14 Co 8j 3.94 .
2 N 2b 15 Co 4i 3.14 .
2 N 2b 16 Co 4i 3.14 .
2 N 2b 17 Co 4i 3.12 .
2 N 2b 18 Co 4i 3.12 .
3 Co 4i 4 Co 4i 2.64 .
3 Co 4i 5 Co 4i 5.09 .
3 Co 4i 6 Co 4i 3.51 .
3 Co 4i 7 Co 8j 2.53 .
3 Co 4i 8 Co 8j 2.66 .
3 Co 4i 9 Co 8j 2.66 .
3 Co 4i 10 Co 8j 2.53 .
3 Co 4i 11 Co 8j 4.35 .
3 Co 4i 12 Co 8j 2.43 .
3 Co 4i 13 Co 8j 2.43 .
3 Co 4i 14 Co 8j 4.35 .
3 Co 4i 15 Co 4i 2.53 .
3 Co 4i 16 Co 4i 4.33 .
3 Co 4i 17 Co 4i 3.58 .
3 Co 4i 18 Co 4i 2.53 .
4 Co 4i 5 Co 4i 3.51 .
4 Co 4i 6 Co 4i 5.09 .
4 Co 4i 7 Co 8j 2.66 .
4 Co 4i 8 Co 8j 2.53 .
4 Co 4i 9 Co 8j 2.53 .
4 Co 4i 10 Co 8j 2.66 .
4 Co 4i 11 Co 8j 2.43 .
4 Co 4i 12 Co 8j 4.35 .
4 Co 4i 13 Co 8j 4.35 .
4 Co 4i 14 Co 8j 2.43 .
4 Co 4i 15 Co 4i 4.33 .
4 Co 4i 16 Co 4i 2.53 .
4 Co 4i 17 Co 4i 2.53 .
4 Co 4i 18 Co 4i 3.58 .
5 Co 4i 6 Co 4i 2.64 .
5 Co 4i 7 Co 8j 4.35 .
5 Co 4i 8 Co 8j 2.43 .
5 Co 4i 9 Co 8j 2.43 .
5 Co 4i 10 Co 8j 4.35 .
5 Co 4i 11 Co 8j 2.53 .
5 Co 4i 12 Co 8j 2.66 .
5 Co 4i 13 Co 8j 2.66 .
5 Co 4i 14 Co 8j 2.53 .
5 Co 4i 15 Co 4i 3.58 .
5 Co 4i 16 Co 4i 2.53 .
5 Co 4i 17 Co 4i 2.53 .
5 Co 4i 18 Co 4i 4.33 .
6 Co 4i 7 Co 8j 2.43 .
6 Co 4i 8 Co 8j 4.35 .
6 Co 4i 9 Co 8j 4.35 .
6 Co 4i 10 Co 8j 2.43 .
6 Co 4i 11 Co 8j 2.66 .
6 Co 4i 12 Co 8j 2.53 .
6 Co 4i 13 Co 8j 2.53 .
6 Co 4i 14 Co 8j 2.66 .
6 Co 4i 15 Co 4i 2.53 .
6 Co 4i 16 Co 4i 3.58 .
6 Co 4i 17 Co 4i 4.33 .
6 Co 4i 18 Co 4i 2.53 .
7 Co 8j 8 Co 8j 3.58 .
7 Co 8j 9 Co 8j 2.63 .
7 Co 8j 10 Co 8j 2.43 .
7 Co 8j 11 Co 8j 5.09 .
7 Co 8j 12 Co 8j 2.43 .
7 Co 8j 13 Co 8j 3.51 .
7 Co 8j 14 Co 8j 4.42 .
7 Co 8j 15 Co 4i 2.56 .
7 Co 8j 16 Co 4i 4.33 .
7 Co 8j 17 Co 4i 2.54 .
7 Co 8j 18 Co 4i 2.46 .
8 Co 8j 9 Co 8j 2.43 .
8 Co 8j 10 Co 8j 2.63 .
8 Co 8j 11 Co 8j 2.43 .
8 Co 8j 12 Co 8j 5.09 .
8 Co 8j 13 Co 8j 4.42 .
8 Co 8j 14 Co 8j 3.51 .
8 Co 8j 15 Co 4i 4.33 .
8 Co 8j 16 Co 4i 2.56 .
8 Co 8j 17 Co 4i 2.46 .
8 Co 8j 18 Co 4i 2.54 .
9 Co 8j 10 Co 8j 3.58 .
9 Co 8j 11 Co 8j 3.51 .
9 Co 8j 12 Co 8j 4.42 .
9 Co 8j 13 Co 8j 5.09 .
9 Co 8j 14 Co 8j 2.43 .
9 Co 8j 15 Co 4i 4.33 .
9 Co 8j 16 Co 4i 2.56 .
9 Co 8j 17 Co 4i 2.46 .
9 Co 8j 18 Co 4i 2.54 .
10 Co 8j 11 Co 8j 4.42 .
10 Co 8j 12 Co 8j 3.51 .
10 Co 8j 13 Co 8j 2.43 .
10 Co 8j 14 Co 8j 5.09 .
10 Co 8j 15 Co 4i 2.56 .
10 Co 8j 16 Co 4i 4.33 .
10 Co 8j 17 Co 4i 2.54 .
10 Co 8j 18 Co 4i 2.46 .
11 Co 8j 12 Co 8j 3.58 .
11 Co 8j 13 Co 8j 2.63 .
11 Co 8j 14 Co 8j 2.43 .
11 Co 8j 15 Co 4i 2.54 .
11 Co 8j 16 Co 4i 2.46 .
11 Co 8j 17 Co 4i 2.56 .
11 Co 8j 18 Co 4i 4.33 .
12 Co 8j 13 Co 8j 2.43 .
12 Co 8j 14 Co 8j 2.63 .
12 Co 8j 15 Co 4i 2.46 .
12 Co 8j 16 Co 4i 2.54 .
12 Co 8j 17 Co 4i 4.33 .
12 Co 8j 18 Co 4i 2.56 .
13 Co 8j 14 Co 8j 3.58 .
13 Co 8j 15 Co 4i 2.46 .
13 Co 8j 16 Co 4i 2.54 .
13 Co 8j 17 Co 4i 4.33 .
13 Co 8j 18 Co 4i 2.56 .
14 Co 8j 15 Co 4i 2.54 .
14 Co 8j 16 Co 4i 2.46 .
14 Co 8j 17 Co 4i 2.56 .
14 Co 8j 18 Co 4i 4.33 .
15 Co 4i 16 Co 4i 2.43 .
15 Co 4i 17 Co 4i 5.09 .
15 Co 4i 18 Co 4i 3.65 .
16 Co 4i 17 Co 4i 3.65 .
16 Co 4i 18 Co 4i 5.09 .
17 Co 4i 18 Co 4i 2.43 .
Jij: magnetic exchange parameter between site i and j (Individual Jij values are temporarily not available while we perform maintenance.)
Terms and conditions

Pair-resolved magnetic exchange parameters:

Exchange coupling parameters

Individual exchange parameters:

Exchange coupling parameters

Methods:

DFT calculations

  • exchange-correlation energy functional: GGA-PBE
  • pseudopotential type: PAW
  • cutoff energy: 65.0 Ry
  • k-point grid: (kx, ky, kz) = (6, 10, 12) for magnetic anisotropy calculations
  • package: QE (v6.3)

LMTO-GF calculations

  • k-point grid: (kx, ky, kz) =
  • energy mesh: 41 points on an elliptical contour
  • package: Questaal (v7)

References:

References


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