Substrate with antireflection coating and method for producing same
US-11906700-B2 · Feb 20, 2024 · US
US10101503B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10101503-B2 |
| Application number | US-201514884832-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 16, 2015 |
| Priority date | Oct 31, 2014 |
| Publication date | Oct 16, 2018 |
| Grant date | Oct 16, 2018 |
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A coated glass article includes a glass substrate and a coating formed over the glass substrate. The coating includes a first inorganic metal oxide layer deposited over a major surface of the glass substrate. The first inorganic metal oxide layer has a refractive index of 1.8 or more. The coating also includes a second inorganic metal oxide layer deposited over the first inorganic metal oxide layer. The second inorganic metal oxide layer has a refractive index of 1.6 or less. The coated glass article exhibits a total visible light reflectance of 6.5% or less.
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The invention claimed is: 1. A coated glass article comprising: a glass substrate; and a pyrolytic coating deposited over the glass substrate, wherein the coating comprises: i. a first inorganic metal oxide layer deposited directly on a major surface of the glass substrate, wherein the first inorganic metal oxide layer comprises titanium dioxide and has a refractive index of 2.2 or more, ii. a second inorganic metal oxide layer deposited directly on the first inorganic metal oxide layer, wherein the second inorganic metal oxide layer comprises silicon dioxide, is deposited at a thickness of 100 nm or more, and has a refractive index of 1.6 or less, wherein the coated glass article exhibits a total visible light reflectance of 6.5% or less. 2. The coated glass article of claim 1 , wherein the first inorganic metal oxide layer and the second inorganic metal oxide layer are selected so that the coated glass article exhibits a sheet resistance of greater than 1.0×10 5 ohm/sq. 3. The coated glass article of claim 2 , wherein the coated glass article exhibits a sheet resistance of 1.0×10 7 ohm/sq. or more. 4. The coated glass article of claim 1 , wherein the coated glass article exhibits a total visible light transmittance of 94% (Illuminant C) or more. 5. The coated glass article of claim 1 , wherein the first inorganic metal oxide layer is deposited at a thickness of 5-20 nm. 6. The coated glass article of claim 5 , wherein the first inorganic metal oxide layer is deposited at a thickness of 5-15 nm. 7. The coated glass article of claim 1 , wherein the second inorganic metal oxide layer is deposited at a thickness of 100-125 nm. 8. The coated glass article of claim 7 , wherein the second inorganic metal oxide layer is deposited at a thickness of 110-125 nm. 9. The coated glass article of claim 1 , wherein the coating consists of the first inorganic metal oxide layer and the second inorganic metal oxide layer, the second inorganic metal oxide layer forming an outermost surface of the coated glass article. 10. The coated glass article of claim 1 , wherein the total visible light reflectance exhibited by the coated glass article is 6.0% or less. 11. A laminated glass unit, the laminated glass unit comprising a coated glass article according to claim 1 . 12. A touch screen electronic device, the touch screen electronic device comprising a coated glass article according to claim 1 . 13. A coated glass article comprising: a glass substrate; and a pyrolytic coating deposited over the glass substrate, wherein the coating comprises: i. a first inorganic metal oxide layer deposited directly on a major surface of the glass substrate, wherein the first inorganic metal oxide layer is deposited at a thickness of 5-20 nm and comprises titanium dioxide, the first inorganic metal oxide layer having a refractive index of 2.2 or more, ii. a second inorganic metal oxide layer deposited directly on the first inorganic metal oxide layer, wherein the second inorganic metal oxide layer comprises silicon dioxide, is deposited at a thickness of 100 nm or more, and has a refractive index of 1.6 or less, wherein the coated glass article exhibits a total visible light reflectance of 6.5% or less and a sheet resistance of 1.0×10 7 ohm/sq. or more.
Multilayers · CPC title
comprising an alternation of high and low refractive indexes · CPC title
Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means · CPC title
by atmospheric CVD · CPC title
Anti-reflective coatings · CPC title
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