Process for producing metal peroxide films
Disclosed are adhesive coating compositions containing a metal peroxide for producing clear colorless adhesive coatings on substrates, particularly micro particulate substrates. In one preferred embodiment the nanoparticle coatings are chemically active and function at a high level of efficiency due to the high total surface area of the micro particulate substrate. Also disclosed are coated substrates and compositions having nanoparticles bound to a substrate by the coating compositions.
1. A process for producing nanoparticles of a metal or metal compound of less than 10 nanometers in size comprising forming an aqueous solution of the peroxide of the metal or metal compound having the formula M(OOH) x where M is a metal, where x is 2, 3, 4, or 6 from a hydroxide sol of the metal, diluting the solution to a metal peroxide concentration of between about 0.5% and about 0.85% by weight of the solution at a pH in the range of from about 4.0 to about 6.5, heating the solution to boiling for a period of from about 1 to about 4 hours, cooling the solution, reheating the solution to boiling for a period of between about 1 and about 2 hours, cooling the solution, and reheating the solution to boiling until the peroxide concentration in the solution is essentially zero and separating the nanoparticles.
2. The process of claim 1 where the metal peroxide is selected from the group consisting of peroxides of a metal of group III of the Periodic Table.
3. The process of claim 1 where the metal peroxide is selected from the group consisting of peroxides of a metal of group II of the Periodic Table.
4. The process of claim 1 where the metal peroxide is selected from the group consisting of peroxides of scandium, lanthanum, yttrium, platinum, selenium, tin, vanadium, zirconium, hafnium, aluminum and iron.
5. The process of claim 1 where the metal peroxide is Ti(OOH) 4 .
6. A process for producing nanoparticles of a metal or metal compound of less than 10 nanometers in size comprising forming an aqueous solution of a metal oxy peroxide of the formula MO(OOH) x where x is 2, 3, 4, or 6, by decomposition of a solution of the peroxide of the metal or metal compound having the formula M(OOH) y where M is a metal, where y is 2, 3, 4, or 6, which was formed from a hydroxide sol of the metal, diluting the solution of the metal oxy peroxide to a peroxide concentration of between about 0.25% and about 0.425% by weight of the solution at a pH in the range of from about 4.0 to about 6.5, heating the solution to boiling for a period of from about 1 to about 4 hours, cooling the solution to ambient temperature, reheating the solution to boiling for a period of between about 1 and about 2 hours, cooling the solution to ambient temperature, and reheating the solution to boiling until the peroxide concentration in the solution is essentially zero and separating the nanoparticles.
7. The process of claim 6 where the metal peroxide is selected from the group consisting of peroxides of a metal of group III of the Periodic Table.
8. The process of claim 6 where the metal peroxide is selected from the group consisting of peroxides of a metal of group II of the Periodic Table.
9. The process of claim 6 where the metal peroxide is selected from the group consisting of peroxides of scandium, lanthanum, yttrium, platinum, selenium tin, vanadium, zirconium, hafnium, aluminum and iron.
10. The process of claim 6 where the metal peroxide is titanium peroxy acid.