EP0552012A2

Tinted solution-phase electrochromic devices.

Abstract

The invention provides improved solution-phase electrochromic devices, wherein the solution of reversibly variable transmittance is tinted with a tint-providing compound or comprises as a cathodic compound a salt of the formula wherein R17 and R18 are independently selected from the group consisting of an alkyl group with 1-20 carbon atoms, phenyl and benzyl ; and Rg, Rio, R11, and R12 are independently selected from the group consisting of hydrogen and an alkyl group with 1-4 carbon atoms, provided that at least one of Rg, R10, R11, and R12 is an alkyl group. The invention further provides solutions of reversibly variable transmittance for use in the improved devices of the invention. An electrochromic device of the invention can be used, for example, as the component of reversibly variable transmittance in a variable-reflectance motor vehicle mirror. Among such mirrors provided by the invention are blue-tinted mirrors.

EP0552012A2, drawing sheet 1
Sheet 1 of 13

Term

Term ended

Projected expiry passed 12 January 2013, 13.7 years ago.

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23 claims: 8 independent, 15 dependent

  1. 1
    Asolution-phase electrochromic device, wherein a solution, which is a medium of reversibly variable transmittance, comprises a solvent, an anodic electrochromic compound, and a cathodic electrochromic compound, wherein the improvement comprises having in said solution a tint-providing compound.
  2. 2
    A device as claimed in Claim 1 which is single-compartment and self-erasing and wherein, in the solution of reversibly variable transmittance in the device, dimethylphenazine is the anodic electrochromic compound, a salt of a viologen is the cathodic compound, and the tint-providing compound is selected from an azulene and quinoline yellow.
  3. 3
    A device as claimed in Claim 1 or Claim 2 wherein the solution comprises polymethylmethacrylate thickener and a UV stabilizing agent.
  4. 4
    A device as claimed in Claim 3 wherein, in the solution, the solvent is propylene carbonate, the polymethylmethacrylate thickener is present at between about 1 % (w/v) and about 5 % (w/v), the UV-stabilizing agent is ethyl-2-cyano-3,3-diphenyl acrylate and is present at between about 0.1 molar and 1.0 molar, the dimethylphenazine is present at between about 0.01 molar and about 0.1 molar, and the cathodic compound is 4,4'-dibenzyl-2,2',6,6'-tetramethylbipyridinium difluoroborate and is present at between about 0.01 molar and 0.1 molar.
  5. 5
    A device as claimed in any one of the preceding claims wherein the tint-providing compound is selected from azulene, guaiazulene, and quinoline yellow.
  6. 6
    A device as claimed in Claim 5 wherein the tint-providing compound is azulene or guaiazulene.
  7. 7
    A device as claimed in Claim 6 wherein the tint-providing compound is guaiazulene and is present at a concentration between about 0.01 molar and about 0.03 molar.
  8. 8
    A device as claimed in any one of Claims 1 to 7 wherein the electrochromic device is the component of reversibly variable transmittance in a variable reflectance motor vehicle mirror.
  9. 9
    A solution, which is a medium of reversibly variable transmittance in a solution-phase electrochromic device and comprises a solvent, an anodic electrochromic compound, a cathodic electrochromic compound, and a tint-providing compound.
  10. 10
    A solution as claimed in Claim 9 which is the medium of reversibly variable transmittance in a single-compartment, self-erasing, solution-phase electrochromic device, which comprises polymethylmethacrylate at between about 1 % (w/v) and about 5 % (w/v), which comprises ethyl-2-cyano-3,3-diphenyl acrylate at between about 0.1 molar and 1.0 molar, and wherein the solvent is propylene carbonate, the anodic electrochromic compound is dimethylphenazine at between about 0.01 molar and about 0.1 molar, the cathodic electrochromic compound is 4,4'-dibenzyl-2,2',6,6'-tetramethylbipyridinium difluoroborate at between about 0.01 molar and 0.1 molar, and the tint-providing compound is selected from an azulene and quinoline yellow.
  11. 11
    A solution as claimed in Claim 9 or Claim 10 wherein the tint-providing compound is azulene or guaiazulene.
  12. 12
    A solution as claimed in Claim 11 wherein the tint-providing compound is guaiazulene at between about 0.01 molar and about 0.03 molar.
  13. 13
    A blue-tinted, variable reflectance rearview motor vehicle mirror.
  14. 14
    A mirror as claimed in Claim 13 wherein variable reflectance is provided by a reversibly variable transmittance, single-compartment, solution-phase, self-erasing electrochromic device, wherein the medium of reversibly variable transmittance is a solution which comprises a solvent, an anodic electrochromic compound, a cathodic electrochromic compound and a blue-tint-providing compound.
  15. 15
    A mirror as claimed in Claim 14 wherein, in the electrochromic device, the solution of reversibly variable transmittance has propylene carbonate as solvent, dimethylphenazine at between about 0.01 molar and about 0.1 molar as the anodic electrochromic compound, 4,4'dibenzyl-2,2',6,6'-tetramethylbipyridinium difluoroborate at between about 0.01 molarand 0.1 molaras the cathodic electrochromic compound, polymethylmethacrylate at between about 1 % (w/v) and about 5 % (w/v), ethyl-2-cyano-3,3-diphenyl acrylate at between about 0.1 molar and 1.0 molar, and an azulene as the blue-tint-providing compound.
  16. 16
    A mirror as claimed in Claim 15 wherein, in the solution, the blue-tint-providing compound is azulene or guaiazulene.
  17. 17
    A mirror as claimed in Claim 16 wherein, in the solution, the blue-tint-providing compound is guaiazulene at between about 0.01 molar and about 0.03 molar.
  18. 18
    Asolution which comprises a solvent;an anodic electrochromic compound;and a cathodic electrochromic compound which is a salt of a cation of Formula IV wherein R 17 , and R 18 are independently selected from an alkyl group with 1-20 carbon atoms, phenyl and benzyl;and Rg, R io , R 11 , and R 12 are independently selected from hydrogen and an alkyl group with 1-4 carbon atoms, provided that at least one of Rg, R io , R 11 , and R 12 is an alkyl group.
  19. 19
    A solution as claimed in Claim 18 wherein at least three of Rg, R io , R ll , and R 12 are alkyl groups and the anion of the cathodic compound is selected from BF4-, PF 6 - and ClO 4 - .
  20. 20
    A solution as claimed in Claim 19 wherein the anodic compound is dimethylphenazine and the solvent is propylene carbonate.
  21. 21
    A solution as claimed in any one of Claims 18 to 20 wherein the cathodic compound is 4,4'-dibenzyl-2,2',6,6'-tetramethylbipyridinium difluoroborate.
  22. 22
    A solution as claimed in Claim 20 wherein dimethylphenazine is present at between about 0.01 molar and about 0.1 molar, 4,4'-dibenzyl-2,2',6,6'-tetramethylbipyridinium difluoroborate is the cathodic electrochromic compound and is present between about 0.01 molarand 0.1 molar as the cathodic electrochromic compound, polymethylmethacrylate is present at between about 1 % (w/v) and about 5 % (w/v), and ethyl-2-cyano-3,3-diphenyl acrylate is present at between about 0.1 molar and 1.0 molar.
  23. 23
    A variable reflectance, rearview motor vehicle mirror wherein variable reflectance is provided by a reversibly variable transmittance, single-compartment, solution-phase, self-erasing electrochromic device, wherein the medium of reversibly variable transmittance is a solution as claimed in any one of Claims 18 to 22.
Independent claims23