Special effect pigments
View Patent ↗The present invention provides mixed metal oxide based special effect pigments that can be incorporated into optically thin binder systems to produce a “metal flake” appearance that is superior to the “metal flake” appearance presently achievable using conventional special effect pigments. Special effect pigments according to the invention comprise at least 10 wt % of mixed metal oxides that exhibit the McConnellite (Cu 1+ Cr 3+ O 2 ) crystal structure. Other metallic elements can be incorporated into the crystal lattice structure to alter the appearance effect of the pigments.
1. A composition comprising intentionally added synthetic mixed-metal oxide pigment particles, wherein at least 10 wt% of the synthetic mixed-metal oxide pigment particles have a Cu 1+ Cr 3+ O 2 crystal structure, and wherein at least about 70 wt% of the synthetic mixed-metal oxide pigment particles having the Cu 1+ Cr 3+ O 2 crystal structure have a plate-like morphology.
2. The composition of claim 1 , wherein the synthetic mixed-metal oxide pigment particles are obtained by calcining a mixture of precursor compounds comprising copper atoms, chromium atoms, and oxygen atoms at a temperature of from about 600° C. to about 1300° C.
3. The composition of claim 1 , wherein the synthetic mixed-metal oxide pigment particles having the Cu 1+ Cr 3+ O 2 crystal structure comprise at least 50 wt% of the pigment.
4. The composition of claim 1 , wherein at least about 90 wt% of the synthetic mixed-metal oxide pigment particles having the Cu 1+ Cr 3+ O 2 crystal structure have a plate-like morphology.
5. The composition of claim 1 , wherein the synthetic mixed-metal oxide pigment particles having the Cu 1+ Cr 3+ O 2 crystal structure have an aspect ratio of greater than 2:1.
6. The composition of claim 1 , wherein the synthetic mixed-metal oxide pigment particles having the Cu 1+ Cr 3+ O 2 crystal structure are doped with atoms of one or more monovalent elements and/or atoms of one or more trivalent elements.
7. The composition of claim 6 , wherein the one or more monovalent elements is selected from the group consisting of copper, silver and platinum and the one or more trivalent elements is selected from the group consisting of chromium, aluminum, iron and manganese.
8. The composition of claim 7 , wherein the synthetic mixed-metal oxide pigment particles further comprise atoms of divalent elements, tetravalent elements, or combinations thereof.
9. An electronic component comprising a fired or cured coating, comprising, prior to firing or curing, the composition of claim 1 .
10. The composition of claim 1 , wherein the synthetic mixed-metal oxide pigment particles are coated with a material selected from the group consisting of silver metal, aluminum metal, a transparent coating having a different refractive index from the synthetic mixed-metal oxide particles, a translucent coating having a different refractive index from the synthetic mixed-metal oxide particles, and combinations thereof.
11. A solar cell comprising a semiconductor including the composition of claim 1 , wherein the synthetic mixed-metal oxide pigment particles further comprise a dopant in an amount not exceeding about 1 mol%.
12. A formulation comprising the composition of claim 1 dispersed in a binder system.
13. A coated metal substrate comprising a coating, wherein the coating comprises, prior to curing or firing, the formulation of claim 12 .
14. An automotive body panel comprising, prior to curing, the formulation of claim 12 .
15. A vitreous inorganic composition comprising an intentionally added synthetic mixed-metal oxide pigment particles, wherein at least 10 wt% of the synthetic mixed-metal oxide pigment particles have a Cu 1+ Cr 3+ O 2 crystal structure, and wherein at least about 70 wt% of the synthetic mixed-metal oxide pigment particles having the Cu 1+ Cr 3+ O 2 crystal structure have a plate-like morphology.
16. The composition of claim 15 , wherein the synthetic mixed-metal oxide pigment particles are dispersed throughout the composition.
17. A substrate coated with a coating, wherein the substrate is selected from the group consisting of metal, glass, enamel, or ceramic, wherein the coating comprises, prior to firing, intentionally added synthetic mixed-metal oxide pigment particles, wherein at least 10 wt% of the synthetic mixed-metal oxide pigment particles have a Cu 1+ Cr 3+ O 2 crystal structure, and wherein at least about 70 wt% of the synthetic mixed-metal oxide pigment particles having the Cu 1+ Cr 3+ O 2 crystal structure have a plate-like morphology.