Claims
- 1. Photochromic magnesium oxide crystal containing about 0.1 to about 0.01 weight percent, based on the amount of magnesium oxide, of lithium and about 0.05 to about 0.0005 weight percent, based on the amount of magnesium oxide, of nickel.
- 2. The photochromic magnesium oxide crystal as claimed in claim 1 wherein about 0.04 weight percent, based on the amount of magnesium oxide of lithium and about 0.005 weight percent, based on the amount of magnesium oxide, of nickel are present.
- 3. Process of changing the photochromic magnesium oxide crystal of claim 1 from a substantially colorless state to an amber color by exposing the photochromic magnesium oxide crystal to ultraviolet light.
- 4. The process as claimed in claim 3 wherein a beam of ultraviolet light is used.
- 5. Process of changing the photochromic magnesium oxide crystal of claim 1 from an amber color to a substantially colorless state by exposing the photochromic magnesium oxide crystal to visible light.
- 6. An optical system which incorporates the photochromic magnesium oxide crystal of claim 1.
- 7. The optical system as claimed in claim 6 wherein the optical system is an optical filter, a reversible photographic device, a hologram, a system for information storage or a light-operated switching and controlling device.
- 8. Process for producing a photochromic magnesium oxide crystal containing about 0.1 to about 0.01 weight percent, based on the amount of magnesium oxide, of lithium and about 0.05 to about 0.0005 weight percent, based on the amount of magnesium oxide, of nickel, comprising:
- (a) mixing (i) magnesium oxide powder, (ii) about 10 to about 1 weight percent, based on the amount of magnesium oxide powder, of lithium carbonate powder and (iii) about 0.1 to about 0.003 weight percent, based on the amount of magnesium oxide powder, of nickel oxide powder;
- (b) growing a crystal from mixture (a) using the arc fusion procedure; and
- (c) thermochemically reducing crystal (b) in hydrogen atmosphere at a temperature of 1000.degree. to 2200.degree. K., whereby the photochromic magnesium oxide containing lithium and nickel is obtained.
- 9. Process as claimed in claim 8 wherein, in step (a), about 5 weight percent, based on the amount of magnesium oxide powder, of lithium carbonate and about 0.01 weight percent, based on the amount of magnesium oxide powder, of nickel oxide powder are used.
- 10. Photochromic crystal consisting essentially of (i) magnesium oxide, (ii) about 0.1 to about 0.01 weight percent, based on the amount of magnesium oxide, of lithium and about 0.05 to about 0.0005 weight percent, based on the amount of magnesium oxide, of nickel.
- 11. The photochromic crystal as claimed in claim 10 wherein about 0.04 weight percent, based on the amount of magnesium oxide of lithium and about 0.005 weight percent, based on the amount of magnesium oxide, of nickel are present.
BACKGROUND OF THE INVENTION
The present invention relates to photochromic crystals of MgO and to a process for the preparation of such crystals. The United States Government has rights in this invention pursuant to Contract No. W-7405-ENG-26 between the U.S. Department of Energy and Union Carbide Corporation, Nuclear Division.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
4376755 |
Narayan et al. |
Mar 1983 |
|
Non-Patent Literature Citations (1)
Entry |
"Photochromic Effect in Magnesium Oxide Containing Lithium and Nickel Impties," Mondragon et al., J. Appl. Physics, 57(2), 509-11. |