IP Library › Granted Patent US 11,912,609
Granted Patent B2
US 11,912,609 · App. 17/699,294 · Granted Feb 27, 2024

Articles including glass and/or glass-ceramics and methods of making the same

Inventors: Matthew John Dejneka (Corning, NY); Jesse Kohl (Horseheads, NY)
Assignee: Corning Incorporated
C03C10/0054C03C3/091C03C3/093C03C3/097C03C3/118C03C4/082C03C4/085C03C10/0009C03C10/0018C03C10/0027C03C2204/00
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Quick Facts
Patent No.
US 11,912,609
App. No.
17/699,294
Granted
Feb 27, 2024
Kind
B2
Abstract

A glass-ceramic includes a silicate-containing glass and crystals within the silicate-containing glass. The crystals include non-stoichiometric tungsten and/or molybdenum sub-oxides, and the crystals are intercalated with dopant cations.

Claims (23)

1. A method of making an article from glass-ceramic comprising precipitates of formula M x WO 3 and/or M x MoO 3 , where 0<x<1 and M is a dopant cation, the method comprising:

bleaching a region of the glass-ceramic such that the bleached region has a lesser concentration of the precipitates than adjoining glass-ceramic.

2. The method of claim 1 , wherein the bleaching comprises rastering a laser over the region.

3. A glass-ceramic article comprising:

precipitates of formula M x WO 3 and/or M x MoO 3 , where 0<x<1 and M is a dopant cation; and

a bleached region of the article having a lesser concentration of the precipitates than adjoining glass-ceramic of the article, wherein the precipitates are homogenously distributed within the glass-ceramic adjoining the bleached region.

4. The article of claim 3 , wherein the precipitates have a length of from about 1 nm to about 200 nm as measured by Electron Microscopy.

5. The article of claim 3 , wherein at least some of the precipitates are at a depth of greater than about 10 μm from a surface of the article.

6. The article of claim 3 , wherein a volume fraction of precipitates in the glass-ceramic adjoining the bleached region is from about 0.001% to about 20%.

7. The article of claim 3 , wherein the dopant cation is H, Li, Na, K, Rb, Cs, Ca, Sr, Ba, Zn, Ag, Au, Cu, Sn, Cd, In, Tl, Pb, Bi, Th, La, Pr, Nd, Sm, Eu, Gd, Dy, Ho, Er, Tm, Yb, Lu, U, Ti, V, Cr, Mn, Fe, Ni, Cu, Pd, Se, Ta, Bi, and/or Ce.

8. The article of claim 3 , wherein the glass-ceramic adjoining the bleached region has transmittance of about 1%/mm or greater over at least one 50 nm-wide wavelength band of light in a range from about 400 nm to about 700 nm.

9. The article of claim 8 , wherein the glass-ceramic adjoining the bleached region has absorption of at least 90%/mm for light in at least one 50 nm-wide wavelength band of light in the ultraviolet portion of the spectrum.

10. The article of claim 8 , wherein the glass-ceramic adjoining the bleached region has absorption of at least 90%/mm for light in at least one 50 nm-wide wavelength band of light in the near-infrared portion of the spectrum and the bleached region is not absorptive in the near-infrared portion.

11. A glass-ceramic article comprising:

precipitates of formula M x WO 3 and/or M x MoO 3 , where 0<x<1 and M is cations of Ag, Au, and/or Cu; and

a bleached region of the article having a lesser concentration of the precipitates than adjoining glass-ceramic of the article, wherein the precipitates are homogenously distributed within the glass-ceramic adjoining the bleached region.

12. The article of claim 11 , wherein the precipitates have a length of from about 1 nm to about 200 nm as measured by Electron Microscopy.

13. The article of claim 11 , wherein at least some of the precipitates are at a depth of greater than about 10 μm from a surface of the article.

14. The article of claim 11 , wherein the precipitates have a rod- or needle-morphology.

15. The article of claim 11 , wherein a volume fraction of precipitates in the glass-ceramic adjoining the bleached region is from about 0.001% to about 20% and wherein the lesser concentration in the bleached region is zero precipitates.

16. The article of claim 11 , wherein the glass-ceramic adjoining the bleached region has transmittance of about 1%/mm or greater over at least one 50 nm-wide wavelength band of light in a range from about 400 nm to about 700 nm.

17. The article of claim 16 , wherein the glass-ceramic adjoining the bleached region has absorption of at least 90%/mm for light in at least one 50 nm-wide wavelength band of light in the ultraviolet portion of the spectrum.

18. The article of claim 16 , wherein the glass-ceramic adjoining the bleached region has absorption of at least 90%/mm for light in at least one 50 nm-wide wavelength band of light in the near-infrared portion of the spectrum and the bleached region is not absorptive in the near-infrared portion.

Continuity (5)
Continuation 17011377 · Sep 3, 2020
Continuation 16404783 · May 7, 2019
Continuation 16157663 · Oct 11, 2018
Continuation 15840040 · Dec 13, 2017
Related Publication 20220204390A1 · Jun 30, 2022
Cited By (2)
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