The present disclosure provides an ultraviolet light-C (UVC) reflective coating composition. The UVC reflective coating includes a polymer binder of a first volume having a first refractive index and an inorganic material of a second volume having a second refractive index at least 0.2 greater than
The present disclosure provides an ultraviolet light-C (UVC) reflective coating composition. The UVC reflective coating includes a polymer binder of a first volume having a first refractive index and an inorganic material of a second volume having a second refractive index at least 0.2 greater than the first refractive index, the second volume in ratio to the first volume such that the reflective coating is at or below critical pigment volume concentration (CVPC) (CPVC), wherein the reflective coating is configured to diffusely reflect at least 10% UVC.
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1. An ultraviolet light-C (UVC) reflective coating composition, comprising: a polymer binder of a first volume having a first refractive index; andan inorganic material of a second volume having a second refractive index at least 0.2 greater than the first refractive index, the second volume in rati
1. An ultraviolet light-C (UVC) reflective coating composition, comprising: a polymer binder of a first volume having a first refractive index; andan inorganic material of a second volume having a second refractive index at least 0.2 greater than the first refractive index, the second volume in ratio to the first volume such that the reflective coating is at or below critical pigment volume concentration (CPVC), wherein the reflective coating is configured to diffusely reflect at least 10% UVC, and wherein the inorganic material is at least partially transparent to light at UVC wavelengths. 2. The UVC reflective coating of claim 1, wherein the coating is substantially devoid of an inorganic binder. 3. The UVC reflective coating of claim 1, further comprising a colorizing pigment. 4. The UVC reflective coating of claim 1, further comprising an additive configured to aid in suspending the inorganic material within the coating composition. 5. The UVC reflective coating of claim 1, wherein the polymer binder includes at least one monomer with non-chlorine halogenated elements. 6. The UVC reflective coating of claim 1, wherein the polymer binder is aliphatic. 7. The UVC reflective coating of claim 1, wherein the inorganic material includes an average particle size less than 1.0 micron. 8. The UVC reflective coating of claim 1, wherein the inorganic material has a particle size of at least about 10 nanometers. 9. The UVC reflective coating of claim 1, wherein the inorganic material has a particle size of less than about 800 nanometers. 10. The UVC reflective coating of claim 1, wherein the inorganic material is a metal oxide. 11. The UVC reflective coating of claim 1, wherein the inorganic material is any of the group consisting of magnesium oxide, aluminum oxide, tantalum oxide, holmium oxide, hafnium oxide, calcium oxide, lanthanum oxide, germanium oxide, tellurium oxide, zirconium oxide, europium oxide, erbium oxide, neodymium oxide, samarium oxide, ytterbium oxide, gold oxide, and silver oxide. 12. The UVC reflective coating of claim 1, wherein the inorganic material is a pure form, an oxide form, a nitride form or an oxynitride form, of at least one of the group consisting of magnesium, aluminum, tantalum, titanium, holmium, hafnium, calcium, lanthanum, germanium, tellurium, zirconium, europium, erbium, neodymium, samarium, ytterbium, gold, and silver. 13. The UVC reflective coating of claim 1, wherein the inorganic material has a purity level of at least 99 wt % UVC transparent crystals. 14. The UVC reflective coating of claim 1, wherein the second refractive index is at least 0.5 greater than the first refractive index. 15. The UVC reflective coating of claim 1, wherein the UVC reflective coating is at least partially human-visible transparent. 16. The UVC reflective coating of claim 1, wherein the UVC reflective coating is at least partially human-visible opaque. 17. The UVC reflective coating of claim 1, wherein the UVC reflective coating is configured to reflect at least 40% UVC light at 254 nm wavelength. 18. The UVC reflective coating of claim 1, wherein the polymer binder is an organic binder. 19. The UVC reflective coating of claim 1, wherein the inorganic material is completely transparent to light at UVC wavelengths.
Seiner Jerome A. (Pittsburgh PA), Article of manufacture having thereon a stable reflective coating containing fluorinated aliphatic ring chain addition p.
Gorre ; deceased Luisa E. (late of Camarillo CA by M. Efren Gorre ; administrator) Pastor Ricardo C. (Manhattan Beach CA), Solid-state preparation of high purity barium sulfate.
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