Molybdenum trioxide (MoO3) is a transition metal oxide semiconductor with a layered crystal structure that makes it amenable to exfoliation into thin films and 2D nanomaterials. It is employed in catalysis, electrochemistry, and optoelectronics—particularly in gas sensors, photocatalytic applications, lithium-ion battery cathodes, and as a catalyst support in petrochemical refining. Engineers select MoO3 for applications requiring combined oxidation catalysis and semiconductor behavior, or where its two-dimensional forms can improve surface area and charge transport compared to bulk alternatives.
Compliance & Regulations
| Property | Value | Unit | Conditions | Source | |
|---|---|---|---|---|---|
Bulk Modulus(K) | 75.07 | GPa | — | ||
Exfoliation Energy(Eexf) | 45.94 | meV/atom | — | ||
Poisson's Ratio(ν) | 0.1800 | - | — | ||
Shear Modulus(G) | 52.42 | GPa | — |
| Property | Value | Unit | Conditions | Source | |
|---|---|---|---|---|---|
Density(ρ) | 4.271 | kg/m³ | — |
| Property | Value | Unit | Conditions | Source | |
|---|---|---|---|---|---|
Band Gap(Eg)2 entries | 3.540 | eV | — | ||
| ↳ | 0.000 | eV | — | ||
Dielectric Constant (Relative Permittivity)(εr) | 31.22 | - | — | ||
Magnetic Moment(μB) | 1.180 | µB | — | ||
Piezoelectric Modulus(eij) | 0.6626 | C/m² | — | ||
Seebeck Coefficient(S) | 1.947 | µV/K | — |
| Property | Value | Unit | Conditions | Source | |
|---|---|---|---|---|---|
Energy Above Hull(ΔEhull) | 0.9841 | eV/atom | — | ||
Formation Energy(ΔHf)2 entries | -1.931 | eV/atom | — | ||
| ↳ | -1.124 | eV/atom | — |