CaCuF4

metal
· JVASP-10963· CaCuF4

CaCuF4 is a calcium copper fluoride compound that belongs to the family of mixed-metal fluorides, which are typically ceramic or intermetallic materials rather than conventional metals. This compound is primarily of research interest in solid-state chemistry and materials science, where it is studied for potential applications in fluoride ion conductors, optical materials, and specialty ceramics due to the combined ionic properties of calcium and copper with fluoride's high electronegativity. Engineers considering this material should note that it is not an established commercial engineering material; its development is driven by fundamental research into novel fluoride-based systems that could enable advances in solid electrolytes, UV-optical components, or high-temperature ceramic applications.

solid-state electrolytes (research)optical fluoride ceramicshigh-temperature ceramic compositesion-conducting materialsspecialty fluoride compoundsexperimental materials development

Compliance & Regulations

?EAR?Conflict Free?RoHS?REACH?TSCA?Prop 65
PropertyValueUnitConditionsSource
Bulk Modulus(K)
Pa
Poisson's Ratio(ν)
-
Shear Modulus(G)
Pa
Verified Unverified Low confidence (<80%) Link to source
PropertyValueUnitConditionsSource
Density(ρ)
kg/m³
Verified Unverified Low confidence (<80%) Link to source
PropertyValueUnitConditionsSource
Band Gap(Eg)
eV
Magnetic Moment(μB)
µB
Seebeck Coefficient(S)
µV/K
Verified Unverified Low confidence (<80%) Link to source
PropertyValueUnitConditionsSource
Energy Above Hull(ΔEhull)
eV/atom
Formation Energy(ΔHf)
eV/atom
Verified Unverified Low confidence (<80%) Link to source

Regulatory Screening

Environmental

Export Control

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.