Claims
- 1. An electrochromic window assembly comprising:
first and second spaced transparent substrates defining a chamber therebetween, at least one of said first and second transparent substrates having a color; and an electrochromic medium contained in said chamber, said electrochromic medium including at least one dye defining a color in an electrochemically activated state upon application of electrical potential selected from colors that coordinate with said color of one of said first and second transparent substrates and colors that complement said color of one of said first and second transparent substrates.
- 2. An electrochromic window assembly as in claim 1, wherein said electrochromic window assembly has an LTA value of at least 70%.
- 3. An electrochromic window assembly as in claim 1, wherein said electrochromic medium has variable light transmittance upon application of electrical potential.
- 4. An electrochromic window assembly as in claim 3, wherein said electrochromic window assembly has an LTA value of from about 1% to about 80%.
- 5. An electrochromic window assembly as in claim 1, wherein said first and second transparent substrates are selected from glass and polymeric materials.
- 6. An electrochromic window assembly as in claim 5, wherein said glass is float glass.
- 7. An electrochromic window assembly as in claim 1, wherein said first and said second substrates are glass, and further comprising a transparent polymeric layer.
- 8. An electrochromic window assembly as in claim 7, wherein said transparent polymeric layer is laminated to an outer surface of said first transparent substrate.
- 9. An electrochromic window assembly as in claim 8, further comprising a glass outer substrate, said transparent polymeric layer laminated between said glass outer substrate and said outer surface of said first transparent substrate.
- 10. An electrochromic window assembly as in claim 1, wherein said at least one dye of said electrochromic medium comprises at least two compounds comprising at least one anodic electrochromic compound and at least one cathodic electrochromic compound, and wherein application of electrical potential to said electrochromic medium causes simultaneous oxidation of said anodic electrochromic compound and reduction of said cathodic electrochromic compound, thereby causing said compounds to define said color.
- 11. An electrochromic window assembly as in claim 1, wherein said at least one dye is selected from viologen dyes and phenazine dyes.
- 12. An electrochromic window assembly as in claim 1, wherein said electrochromic window assembly is selected from automotive windshields, automotive side windows, automotive sunroofs, architectural glazings, architectural windows, architectural skylights, and aircraft transparencies and portions thereof.
- 13. An electrochromic window assembly as in claim 1, wherein said electrochromic window assembly has a color which is different than the color of said first and second transparent substrates and said at least one dye.
- 14. An electrochromic window assembly as in claim 1, wherein said at least one of said first and second transparent substrates has a color defined by a dominant wavelength ranging from 450 nanometers and 550 nanometers and said at least one dye has a generally coordinating color in said electrochemically activated state.
- 15. An electrochromic window assembly as in claim 14, wherein said at least one of said first and second transparent substrates has a blue color defined by a dominant wavelength ranging from 470 nanometers and 490 nanometers.
- 16. An electrochromic window assembly as in claim 14, wherein said at least one of said first and second transparent substrates has a green color defined by a dominant wavelength ranging from 500 nanometers and 520 nanometers.
- 17. An electrochromic window assembly as in claim 1, wherein said at least one of said first and second transparent substrates has a color defined by a hue angle ranging from 140° and 300° and said at least one dye has a generally coordinating color in said electrochemically activated state.
- 18. An electrochromic window assembly as in claim 17, wherein said at least one of said first and second transparent substrates has a color defined by a hue angle ranging from 200° and 240° and said at least one dye has a generally coordinating color in said electrochemically activated state.
- 19. An electrochromic window assembly as in claim 17, wherein said at least one of said first and second transparent substrates has a color defined by a hue angle ranging from 150° and 190° and said at least one dye has a generally coordinating color in said electrochemically activated state.
- 20. An electrochromic window assembly as in claim 1, wherein said at least one of said first and second transparent substrates has a color defined by a dominant wavelength ranging from 560 nanometers and 590 nanometers and said at least one dye has a generally coordinating color in said electrochemically activated state.
- 21. An electrochromic window assembly as in claim 20, wherein said at least one of said first and second transparent substrates has a color defined by a dominant wavelength ranging from 575 nanometers and 585 nanometers.
- 22. An electrochromic window assembly as in claim 1, wherein said at least one of said first and second transparent substrates has a color defined by a hue angle ranging from 50° to 90° and said at least one dye has a generally coordinating color in said electrochemically activated state.
- 23. An electrochromic window assembly as in claim 1, wherein at least one of said first and second transparent substrates has a color defined by a dominant wavelength ranging from 450 nanometers and 550 nanometers and said at least one dye is a generally complementing color in said electrochemically activated state.
- 24. An electrochromic window assembly as in claim 23, wherein at least one of said first and second transparent substrates has a color defined by a dominant wavelength ranging from 450 nanometers and 495 nanometers and said at least one dye is a generally complementing color defined by a dominant wavelength ranging from 570 nanometers and 640 nanometers in said electrochemically activated state.
- 25. An electrochromic window assembly as in claim 24, wherein at least one of said first and second transparent substrates has a color defined by a dominant wavelength ranging from 470 nanometers and 490 nanometers and said at least one dye is a generally complementing color defined by a dominant wavelength ranging from 570 nanometers and 620 nanometers in said electrochemically activated state.
- 26. An electrochromic window assembly as in claim 24, wherein at least one of said first and second transparent substrates has a green color defined by a dominant wavelength ranging from 495 nanometers and 550 nanometers and said at least one dye is a generally complementing purple color in said electrochemically activated state.
- 27. An electrochromic window assembly as in claim 23, wherein at least one of said first and second transparent substrates has a color defined by a dominant wavelength ranging from 495 nanometers and 550 nanometers and said at least one dye is a generally complementing color defined by a dominant wavelength ranging from 495 c nanometers and 550 c nanometers in said electrochemically activated state.
- 28. An electrochromic window assembly as in claim 26, wherein at least one of said first and second transparent substrates has a color defined by a dominant wavelength ranging from 500 nanometers and 520 nanometers and said at least one dye is a generally complementing color defined by a dominant wavelength ranging from 500 c nanometers and 520 c nanometers in said electrochemically activated state.
- 29. An electrochromic window assembly as in claim 1, wherein at least one of said first and second transparent substrates has a color defined by a dominant wavelength ranging from 560 nanometers and 590 nanometers and said at least one dye is a generally complementing color in said electrochemically activated state.
- 30. An electrochromic window assembly as in claim 29, wherein said at least one dye is a generally complementing color defined by a dominant wavelength ranging from 440 nanometers and 490 nanometers in said electrochemically activated state.
- 31. An electrochromic window assembly as in claim 29, wherein at least one of said first and second transparent substrates has a color defined by a dominant wavelength ranging from 575 nanometers and 585 nanometers and said at least one dye is a generally complementing color defined by a dominant wavelength ranging from 470 nanometers and 490 nanometers in said electrochemically activated state.
- 32. An electrochromic window assembly as in claim 1, wherein said assembly has a C* value of no greater than 15.
- 33. An electrochromic window assembly as in claim 32, wherein said assembly has a C* value of no greater than 10.
- 34. An electrochromic window assembly as in claim 32, wherein said electrochromic medium is selected from thermosetting material and thermoplastic material.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Application No. 60/211,137 filed Jun. 13, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60211137 |
Jun 2000 |
US |