Final Magnetic Moment0.000 μBCalculated total magnetic moment for the unit cell within the magnetic ordering provided (see below). Typically accurate to the second digit. |
Magnetic OrderingNM |
Formation Energy / Atom-0.287 eVCalculated formation energy from the elements normalized to per atom in the unit cell. |
Energy Above Hull / Atom0.000 eVThe energy of decomposition of this material into the set of most stable materials at this chemical composition, in eV/atom. Stability is tested against all potential chemical combinations that result in the material's composition. For example, a Co2O3 structure would be tested for decomposition against other Co2O3 structures, against Co and O2 mixtures, and against CoO and O2 mixtures. |
Density7.88 g/cm3The calculated bulk crystalline density, typically underestimated due calculated cell volumes overestimated on average by 3% (+/- 6%) |
Decomposes ToStable |
Band Gap0.000 eVIn general, band gaps computed with common exchange-correlation functionals such as the LDA and GGA are severely underestimated. Typically the disagreement is reported to be ~50% in the literature. Some internal testing by the Materials Project supports these statements; typically, we find that band gaps are underestimated by ~40%. We additionally find that several known insulators are predicted to be metallic. |
Hermann MauguinC2/m [12] |
Hall-C 2y |
Point Group2/m |
Crystal Systemmonoclinic |
Topological ClassificationTI*
|
SubclassificationSEBR†
|
Calculated powder diffraction pattern; note that peak spacings may be affected due to inaccuracies in calculated cell volume, which is typically overestimated on average by 3% (+/- 6%)
Select an element to display a spectrum averaged over all sites of that element in the structure.
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Download spectra for every symmetrically equivalent absorption site in the structure.
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substrate material | substrate orientation | film orientation | MCIA† [Å2] |
---|---|---|---|
LaAlO3 (mp-2920) | <0 0 1> | <1 0 0> | 349.6 |
AlN (mp-661) | <0 0 1> | <1 0 0> | 155.4 |
AlN (mp-661) | <1 0 0> | <0 0 1> | 122.4 |
AlN (mp-661) | <1 0 1> | <1 0 0> | 194.2 |
AlN (mp-661) | <1 1 0> | <1 0 -1> | 111.2 |
AlN (mp-661) | <1 1 1> | <1 0 0> | 194.2 |
CeO2 (mp-20194) | <1 0 0> | <1 0 -1> | 185.4 |
CeO2 (mp-20194) | <1 1 0> | <1 0 -1> | 259.5 |
CeO2 (mp-20194) | <1 1 1> | <1 0 0> | 155.4 |
GaAs (mp-2534) | <1 0 0> | <1 0 0> | 97.1 |
GaAs (mp-2534) | <1 1 0> | <1 0 0> | 233.1 |
BaF2 (mp-1029) | <1 1 0> | <1 0 0> | 271.9 |
BaF2 (mp-1029) | <1 1 1> | <1 0 0> | 136.0 |
GaN (mp-804) | <0 0 1> | <1 0 0> | 116.5 |
GaN (mp-804) | <1 0 0> | <0 0 1> | 204.1 |
GaN (mp-804) | <1 0 1> | <0 0 1> | 244.9 |
GaN (mp-804) | <1 1 0> | <1 0 1> | 260.4 |
GaN (mp-804) | <1 1 1> | <1 0 1> | 156.2 |
SiO2 (mp-6930) | <0 0 1> | <1 0 0> | 136.0 |
SiO2 (mp-6930) | <1 0 0> | <1 0 -1> | 111.2 |
SiO2 (mp-6930) | <1 0 1> | <1 0 0> | 291.3 |
SiO2 (mp-6930) | <1 1 0> | <1 0 -1> | 333.7 |
SiO2 (mp-6930) | <1 1 1> | <0 1 0> | 319.1 |
KCl (mp-23193) | <1 1 1> | <1 0 0> | 136.0 |
YVO4 (mp-19133) | <1 0 0> | <0 0 1> | 326.5 |
YVO4 (mp-19133) | <1 0 1> | <1 0 0> | 213.7 |
YVO4 (mp-19133) | <1 1 0> | <1 0 1> | 260.4 |
TePb (mp-19717) | <1 1 0> | <1 0 0> | 310.8 |
Te2Mo (mp-602) | <1 0 0> | <1 0 0> | 271.9 |
Ag (mp-124) | <1 1 0> | <1 0 0> | 97.1 |
GaSe (mp-1943) | <1 1 0> | <1 0 0> | 116.5 |
BN (mp-984) | <1 0 1> | <1 0 -1> | 222.5 |
Bi2Se3 (mp-541837) | <0 0 1> | <1 0 -1> | 185.4 |
MoS2 (mp-1434) | <0 0 1> | <1 0 0> | 116.5 |
Al (mp-134) | <1 0 0> | <1 0 0> | 97.1 |
Al (mp-134) | <1 1 0> | <1 0 0> | 116.5 |
LiGaO2 (mp-5854) | <0 0 1> | <1 0 -1> | 111.2 |
LiGaO2 (mp-5854) | <0 1 0> | <0 1 1> | 303.0 |
LiGaO2 (mp-5854) | <0 1 1> | <1 0 0> | 174.8 |
LiGaO2 (mp-5854) | <1 0 1> | <1 0 -1> | 185.4 |
CdTe (mp-406) | <1 0 0> | <1 0 -1> | 222.5 |
CdTe (mp-406) | <1 1 0> | <1 0 0> | 194.2 |
TeO2 (mp-2125) | <0 0 1> | <1 0 0> | 97.1 |
TeO2 (mp-2125) | <1 0 0> | <0 0 1> | 204.1 |
TeO2 (mp-2125) | <1 1 0> | <0 0 1> | 285.7 |
TeO2 (mp-2125) | <1 1 1> | <1 1 0> | 200.1 |
LiTaO3 (mp-3666) | <0 0 1> | <1 0 0> | 136.0 |
Fe3O4 (mp-19306) | <1 0 0> | <0 0 1> | 285.7 |
Fe3O4 (mp-19306) | <1 1 0> | <0 0 1> | 204.1 |
Fe3O4 (mp-19306) | <1 1 1> | <1 0 0> | 252.5 |
Stiffness Tensor Cij (GPa) |
|||||
---|---|---|---|---|---|
299 | 95 | 107 | 0 | 21 | 0 |
95 | 209 | 65 | 0 | -20 | 0 |
107 | 65 | 222 | 0 | -6 | 0 |
0 | 0 | 0 | 97 | 0 | -9 |
21 | -20 | -6 | 0 | 78 | 0 |
0 | 0 | 0 | -9 | 0 | 85 |
Compliance Tensor Sij (10-12Pa-1) |
|||||
---|---|---|---|---|---|
4.7 | -1.7 | -1.8 | 0 | -1.9 | 0 |
-1.7 | 6 | -0.9 | 0 | 2 | 0 |
-1.8 | -0.9 | 5.7 | 0 | 0.7 | 0 |
0 | 0 | 0 | 10.4 | 0 | 1.1 |
-1.9 | 2 | 0.7 | 0 | 13.9 | 0 |
0 | 0 | 0 | 1.1 | 0 | 11.9 |
Shear Modulus GV83 GPa |
Bulk Modulus KV141 GPa |
Shear Modulus GR78 GPa |
Bulk Modulus KR133 GPa |
Shear Modulus GVRH81 GPa |
Bulk Modulus KVRH137 GPa |
Elastic Anisotropy0.36 |
Poisson's Ratio0.25 |
material | dissimilarity | Ehull | # of elements |
---|---|---|---|
Pu2W2C3 (mp-1025268) | 0.1964 | 0.021 | 3 |
U2Re2C3 (mp-1025230) | 0.4285 | 0.000 | 3 |
Dy2Mo2C3 (mp-1025363) | 0.4361 | 0.000 | 3 |
Tb2Mo2C3 (mp-1025326) | 0.3772 | 0.000 | 3 |
Gd2Mo2C3 (mp-12039) | 0.3379 | 0.000 | 3 |
LiV2CoO6 (mp-761801) | 0.6972 | 0.176 | 4 |
LiCo3OF5 (mp-764144) | 0.7194 | 0.083 | 4 |
Li4Mn(OF)2 (mp-767317) | 0.6889 | 0.092 | 4 |
TlHg3Sb2Br3 (mp-571582) | 0.6083 | 0.000 | 4 |
K2NaTlO3 (mp-560950) | 0.6224 | 0.000 | 4 |
Sr4N3 (mp-685023) | 0.6627 | 0.191 | 2 |
Mn3O4 (mp-25696) | 0.7498 | 0.053 | 2 |
Mn3O4 (mp-715570) | 0.7363 | 0.053 | 2 |
Tl4S3 (mp-2753) | 0.7406 | 0.009 | 2 |
Run TypeGGA |
Energy Cutoff520 eV |
# of K-pointsNone |
U Values-- |
PseudopotentialsVASP PAW: Ce Mo_pv C |
Final Energy/Atom-9.0354 eV |
Corrected Energy-63.2479 eV
-63.2479 eV = -63.2479 eV (uncorrected energy)
|
Displaying lattice parameters for primitive cell; note that calculated cell volumes are typically overestimated on average by 3% (+/- 6%). Note the primitive cell may appear less symmetric than the conventional cell representation (see "Structure Type" selector below the 3d structure)