IP Library › Granted Patent US 12,560,747
Granted Patent B2
US 12,560,747 · App. 17/146,606 · Granted Feb 24, 2026

Solar control coatings and methods of forming solar control coatings

Inventors: James P. Thiel (Lihue, HI); Andrew V. Wagner (Pittsburgh, PA); Adam D. Polcyn (Pittsburgh, PA); Dennis J. O'Shaughnessy (Allison Park, PA); Paul A. Medwick (Wexford, PA); Harry Buhay (Yardley, PA); Jeffrey A. Benigni (Manorville, PA); Donald Anthony (Lower Burrell, PA)
Assignee: Vitro Flat Glass LLC
G02B5/003C03C17/36C03C17/3613C03C17/3626C03C17/3639C03C17/3647C03C17/366C03C17/3676C03C17/3681C23C14/024C23C14/08C23C14/35C23C14/541
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Quick Facts
Patent No.
US 12,560,747
App. No.
17/146,606
Granted
Feb 24, 2026
Kind
B2
Abstract

A coated article includes a substrate and a coating applied over at least a portion of the substrate. The coating includes at least one metallic layer formed from one or more silver compounds doped with at least one metal selected from Groups 3 to 15 of the periodic table of the elements. Also disclosed are capsules that can absorb electromagnetic energy as well as a process of forming an antimony-doped tin oxide coating layer.

Claims (41)

1 . A coated article comprising:

a substrate; and

a coating applied over at least a portion of the substrate, the coating comprising:

a first dielectric layer formed over at least a portion of the substrate;

a first metallic layer formed directly over at least a portion of the first dielectric layer;

a second dielectric layer formed over at least a portion of the first metallic layer;

a second metallic layer formed directly over at least a portion of the second dielectric layer; and

a third dielectric layer formed over at least a portion of the second metallic layer,

wherein the metallic layers are formed from a material comprising one or more silver compounds doped with at least one metal selected from the group consisting essentially of iron, manganese, or a combination of iron and manganese,

wherein the doped silver compound comprises in the range of 50% to 90% silver based on total solids weight of the doped silver compound, and

wherein each metallic layer in the coating is separated by at least one dielectric layer.

2 . The coated article of claim 1 , wherein the at least one metallic layer formed from the material comprising one or more silver compounds doped with the at least one metal is a continuous metallic layer.

3 . The coated article of claim 1 , wherein the at least one metallic layer formed from the material comprising one or more silver compounds doped with the at least one metal is a discontinuous metallic layer.

4 . The coated article of claim 1 , further comprising a third metallic layer formed over at least a portion of the third dielectric layer and a fourth dielectric layer formed over at least a portion of the third metallic layer.

5 . The coated article of claim 1 , further comprising a primer layer formed over the first metallic layer and/or the second metallic layer.

6 . The coated article of claim 5 , wherein a primer layer is formed over each metallic layer.

7 . The coated article of claim 5 , wherein the primer layers comprise titanium, silicon, silicon dioxide, silicon nitride, silicon oxynitride, nickel-chrome alloys, zirconium, aluminum, alloys of silicon and aluminum, alloys containing cobalt and chromium, or mixtures thereof.

8 . The coated article of claim 1 , wherein each dielectric layer comprises at least one film comprising a metal oxide.

9 . The coated article of claim 8 , wherein the metal oxide comprises an oxide of titanium, hafnium, zirconium, niobium, zinc, bismuth, lead, indium, tin, or mixtures thereof.

10 . The coated article of claim 8 , wherein the dielectric layers comprise at least two different metal oxide films in direct contact with each other.

11 . The coated article of claim 1 , wherein the doped silver compound comprises 20% or less of the at least one metal doped in the silver compound based on total solids weight of the doped silver compound.

12 . The coated article of claim 1 , wherein the substrate is glass.

13 . The coated article of claim 12 , wherein the substrate is an insulated glass unit.

14 . A coated article comprising:

an insulated glass unit; and

a coating applied over at least a portion of the substrate, the coating comprising:

a first dielectric layer formed over at least a portion of the substrate;

a first metallic layer formed directly over at least a portion of the first dielectric layer;

a first primer layer formed directly over at least a portion of the first metallic layer;

a second dielectric layer formed directly over at least a portion of the primer layer;

a second metallic layer formed directly over at least a portion of the second dielectric layer;

a second primer layer formed directly over at least a portion of the second metallic layer; and

a third dielectric layer formed directly over at least a portion of the second primer layer,

wherein the metallic layers are formed from a material comprising one or more silver compounds doped with at least one metal selected from the group consisting essentially of iron, manganese, or a combination of iron and manganese,

wherein the doped silver compound comprises in the range of 50% to 90% silver based on total solids weight of the doped silver compound, and

wherein at least one of the metallic layers is a discontinuous layer.

15 . The coated article of claim 14 , wherein the at least one metallic layer formed from the material comprising one or more silver compounds doped with the at least one metal is a continuous metallic layer.

16 . The coated article of claim 14 , wherein the at least one metallic layer formed from the material comprising one or more silver compounds doped with the at least one metal is a discontinuous metallic layer.

17 . The coated article of claim 14 , further comprising a third metallic layer formed over at least a portion of the third dielectric layer and a fourth dielectric layer formed over at least a portion of the third metallic layer.

18 . The coated article of claim 14 , wherein the primer layers comprise titanium, silicon, silicon dioxide, silicon nitride, silicon oxynitride, nickel-chrome alloys, zirconium, aluminum, alloys of silicon and aluminum, alloys containing cobalt and chromium, or mixtures thereof.

19 . The coated article of claim 14 , wherein the dielectric layers comprise at least two different metal oxide films in direct contact with each other.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 12, 2021
From: THIEL, JAMES P.; POLCYN, ADAM D.; BENIGNI, JEFFREY A.; WAGNER, ANDREW V.; ANTHONY, DONALD; BUHAY, HARRY; O'SHAUGHNESSY, DENNIS J.; MEDWICK, PAUL A.
To: VITRO FLAT GLASS LLC
Reel/Frame 054886/0631 →
Continuity (3)
Continuation 16232446 · Dec 26, 2018
Provisional Application 62611644 · Dec 29, 2017
Related Publication 20210141127A1 · May 13, 2021
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