US2006019104A1PendingUtilityA1
Coated substrates
Individually held — no corporate assignee on recordPriority: Jun 8, 1999Filed: Jun 20, 2005Published: Jan 26, 2006
Est. expiryJun 8, 2019(expired)· nominal 20-yr term from priority
B01J 21/063B01J 37/0215B32B 17/10036B32B 17/10174B32B 17/10761C03C 17/2456C03C 17/3417C03C 2217/212C03C 2217/71C03C 2218/152C23C 16/405B01J 35/39
48
PatentIndex Score
0
Cited by
0
References
0
Claims
Abstract
A coated substrate, especially a glass substrate, such coated substrate having high photocatalytic activity and low visible light reflection as well as being highly abrasion resistant. Preferably, the coating is a titanium oxide coating, the photolytic activity is greater than 5×10 −3 cm −1 min −1 , and coating side visible light reflection is 35% or lower.
Claims
exact text as granted — not AI-modified1 . A photocatalytically active coated substrate comprising a substrate having a photocatalytically active titanium oxide coating on one surface thereof, characterised in that the coated surface of the substrate has a photocatalytic activity of greater than 5×10 −3 cm −1 min −1 and in that the coated substrate has a visible light reflection measured on the coated side of 35% or lower.
2 . A photocatalytically active coated substrate as claimed in claim 1 wherein the coated surface of the substrate has a photocatalytic activity of greater than 1×10 −2 cm −1 min −1 .
3 . A photocatalytically active coated substrate as claimed in claim 2 wherein the coated surface of the substrate has a photocatalytic activity of greater than 3×10 −2 cm −1 min −1 .
4 . (canceled)
5 . A photocatalytically active coated substrate as claimed in claim 1 wherein the coated substrate has a visible light reflection measured on the coated side of 15% or lower.
6 . A photocatalytically active coated substrate as claimed in claim 1 wherein the substrate comprises a glass substrate.
7 . A photocatalytically active coated substrate as claimed in claim 1 wherein the coated substrate has an alkali metal ion-blocking under layer between the surface of the substrate and the photocatalytically active titanium oxide coating.
8 . A photocatalytically active coated substrate as claimed in claim 7 wherein the alkali metal ion blocking under layer is a layer of silicon oxide.
9 . A photocatalytically active coated substrate as claimed in claim 1 wherein the photocatalytically active titanium oxide coating has a thickness of 30 nm or lower.
10 . (canceled)
11 . (canceled)
12 . A photocatalytically active coated substrate as claimed in claim 1 wherein the coated surface of the substrate has a static water contact angle of 20° or lower.
13 . A photocatalytically active coated substrate as claimed in claim 1 wherein the coated substrate has a haze of less than 1%.
14 . A photocatalytically active coated substrate as claimed in claim 1 produced by a process as claimed in claim 1 .
15 . A photocatalytically active coated substrate as claimed in claim 1 wherein the coated surface of the substrate is durable to abrasion, such that the coated surface remains photocatalytically active after it has been subjected to 300 strokes of the European standard abrasion test.
16 . A photocatalytically active coated substrate as claimed in claim 15 wherein the coated surface remains photocatalytically active after it has been subjected to 500 strokes of the European standard abrasion test.
17 . A photocatalytically active coated substrate as claimed in claim 16 wherein the coated surface remains photocatalytically active after it has been subjected to 1000 strokes of the European standard abrasion test.
18 . A photocatalytically active coated substrate as claimed in claim 16 wherein the haze of the coated substrate is 2% or lower after being subjected to the European abrasion test.
19 . A photocatalytically active coated substrate as claimed in claim 1 wherein the coated surface of the substrate is durable to humidity cycling such that the coated surface remains photocatalytically active after the coated substrate has been subjected to 200 cycles of the humidity cycling test.
20 . A durable photocatalytically active coated glass comprising a glass substrate having a coating on one surface thereof, said coating comprising an alkali metal ion-blocking under layer and an outer photocatalytically active titanium oxide layer, wherein the coated surface of the substrate is durable to abrasion such that the coated surface remains photocatalytically active after it has been subjected to 300 strokes of the European standard abrasion test.
21 . A durable photocatalytically active coated glass as claimed in claim 20 wherein the coated glass has a visible light reflection measured on the coated side of 35% or lower, and wherein the photocatalytically active titanium oxide layer has a thickness of 30 nm or lower.
22 . (canceled)
23 . A multiple glazing unit comprising a first glazing pane of a coated substrate as claimed in claim 1 in spaced, opposed relationship to a second glazing pane.
24 . Laminated glass comprising a first glass ply of a coated glass as claimed in claim 1 , a polymer interlayer, and a second glass ply.Join the waitlist — get patent alerts
Track US2006019104A1 — get alerts on status changes and closely related new filings.
We store only your email — no account needed. See our privacy policy.