LiVF₃ is a lithium vanadium fluoride compound that belongs to the family of transition metal fluorides with potential electrochemical and energy storage applications. This material is primarily of research interest rather than established in mature industrial production, being investigated for its ionic conductivity and electrochemical stability in battery and solid-state electrolyte systems. Engineers evaluating LiVF₃ would consider it for advanced energy storage devices where its layered crystal structure and fluoride chemistry could enable improved lithium-ion transport compared to conventional oxide-based alternatives.
Compliance & Regulations
| Property | Value | Unit | Conditions | Source | |
|---|---|---|---|---|---|
Bulk Modulus(K) | 10,196.2 | ksi | — | ||
Exfoliation Energy(Eexf) | 98.10 | meV/atom | — | ||
Poisson's Ratio(ν) | 0.3100 | - | — | ||
Shear Modulus(G) | 4,438.2 | ksi | — |
| Property | Value | Unit | Conditions | Source | |
|---|---|---|---|---|---|
Density(ρ) | 0.1256 | lb/in³ | — |
| Property | Value | Unit | Conditions | Source | |
|---|---|---|---|---|---|
Band Gap(Eg) | 1.473 | eV | — | ||
Dielectric Constant (Relative Permittivity)(εr) | 8.243 | - | — | ||
Magnetic Moment(μB) | 6.000 | µB | — | ||
Piezoelectric Modulus(eij)2 entries | 0.7871 | C/m² | — | ||
| ↳ | 0.08870 | C/m² | — | ||
Piezoelectric Stress Tensor(eij) | Matrix (redacted) | C/m² | — | ||
Seebeck Coefficient(S) | -356.8 | µV/K | — |
| Property | Value | Unit | Conditions | Source | |
|---|---|---|---|---|---|
Energy Above Hull(ΔEhull) | 0.09380 | eV/atom | — | ||
Formation Energy(ΔHf) | -2.813 | eV/atom | — |