Li2MnPO4F
ceramic· JVASP-12701· Li2MnPO4F
Li2MnPO4F is an inorganic ceramic compound belonging to the lithium metal phosphofluoride family, currently in active research and development rather than widespread commercial use. This material is investigated primarily as a cathode material for next-generation lithium-ion batteries, where the phosphofluoride framework offers potential advantages in electrochemical stability, thermal safety, and cycle life compared to conventional oxide cathodes. Engineers and battery developers pursue this composition because the phosphate-fluoride hybrid structure can deliver improved structural integrity under charge–discharge cycling while potentially reducing thermal runaway risk in high-energy-density battery systems.
lithium-ion battery cathodesenergy storage systemselectric vehicle batterieshigh-performance battery researchelectrochemical devicesthermal-stable cathode materials
Compliance & Regulations
?Conflict Free?RoHS?REACH?TSCA?Prop 65
| Property | Value | Unit | Conditions | Source | |
|---|---|---|---|---|---|
Bulk Modulus(K) | — | ksi | — | — | |
Poisson's Ratio(ν) | — | - | — | — | |
Shear Modulus(G) | — | ksi | — | — |
Verified Unverified Low confidence (<80%) Link to source
| Property | Value | Unit | Conditions | Source | |
|---|---|---|---|---|---|
Density(ρ) | — | lb/in³ | — | — |
Verified Unverified Low confidence (<80%) Link to source
| Property | Value | Unit | Conditions | Source | |
|---|---|---|---|---|---|
Band Gap(Eg) | — | eV | — | — | |
Dielectric Constant (Relative Permittivity)(εr) | — | - | — | — | |
Magnetic Moment(μB) | — | µB | — | — | |
Piezoelectric Modulus(eij) | — | C/m² | — | — | |
Seebeck Coefficient(S) | — | µV/K | — | — |
Verified Unverified Low confidence (<80%) Link to source
| Property | Value | Unit | Conditions | Source | |
|---|---|---|---|---|---|
Energy Above Hull(ΔEhull) | — | eV/atom | — | — | |
Formation Energy(ΔHf) | — | eV/atom | — | — |
Verified Unverified Low confidence (<80%) Link to source
Regulatory Screening
Environmental
RoHS, REACH, and Prop 65 statuses are validated against official substance lists (ECHA SVHC Candidate List, OEHHA Prop 65, RoHS Annex II). Other regulations are estimated from composition and material classification. All screening is a starting point for due diligence — always verify with your supplier before making compliance decisions.