EP2946246B1

Multi-layer electrochromic device with lithium nickel oxide based anode

Abstract

This record has no abstract on file.

EP2946246B1, drawing sheet 1
Sheet 1 of 7

Term

7.3 yearsleft in the term

Expires 21 January 2034.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

26 claims: 16 independent, 10 dependent

  1. 1
    A multi-layer electrochromic device comprising a first substrate and an anodic electrochromic layer comprising a lithium nickel oxide composition on a first substrate, the anodic electrochromic layer comprising lithium, nickel, and characterized in that the anodic electrochromic layer further comprises at least one of niobium and tantalum, wherein (i) the atomic ratio of lithium to the combined amount of nickel and the at least one of niobium and tantalum in the anodic electrochromic layer is at least 0.4:1 ;(ii) the atomic ratio of the amount of the at least one of niobium and tantalum to the combined amount of nickel and the at least one of niobium and tantalum in the electrochromic layer is at least about 0.025:1, and (iii) the anodic electrochromic layer exhibits a largest interplanar distance of at least 2.5 Å as measured by X-ray diffraction, XRD.
  2. 4
    The multi-layer electrochromic device of any preceding claim wherein the anodic electrochromic layer comprises tantalum.
  3. 11
    The multi-layer electrochromic device of any preceding claim wherein (i) the anodic electrochromic layer comprises at least one bleached state stabilizing element selected from the group consisting of Y, Ti, Zr, Hf, V, Mo, W, B, Al, Ga, In, Si, Ge, Sn, P, and Sb, (ii) the atomic ratio of lithium to the combined amount of nickel, the at least one of niobium and tantalum, and the bleached state stabilizing element or elements in the anodic electrochromic layer is at least 0.4:1, and (iii) the atomic ratio of the combined amount of the at least one of niobium and tantalum, and the bleached state stabilizing element or elements to the combined amount of nickel, the at least one of niobium and tantalum, and the bleached state stabilizing element or elements in the anodic electrochromic layer is in the range from 0.025:1 to 0.8:1.
  4. 13
    The multi-layer electrochromic device of any preceding claim wherein the anodic electrochromic layer has an average thickness between 25 nm and 2,000 nm.
  5. 14
    The multi-layer electrochromic device of any of claims 1 to 12 wherein the anodic electrochromic layer has an average thickness of in the range from 100 nm to 700 nm.
  6. 15
    The multi-layer electrochromic device of any of claims 1 to 12 wherein the first substrate comprises glass, plastic, metal, or metal-coated glass or plastic.
  7. 16
    The multi-layer electrochromic device of any preceding claim wherein the multi-layer device further comprises a first transparent conductive layer and the first transparent conductive layer is between the anodic electrochromic layer and the first substrate.
  8. 18
    The multi-layer electrochromic device of any preceding claim wherein the multi-layer device further comprises a second substrate, a second electrically conductive layer, a cathode layer, and an ion conductor layer, wherein a first electrically conductive layer is between the first substrate and the anodic electrochromic layer, the anodic electrochromic layer is between the first electrically conductive layer and the ion conductor layer, the second electrically conductive layer is between the cathode layer and the second substrate, the cathode layer is between the second electrically conductive layer and the ion conductor layer, and the ion conductor layer is between the cathode layer and anodic electrochromic layer.
  9. 19
    The multi-layer electrochromic device of any preceding claim wherein the anodic electrochromic layer comprises Ti.
  10. 20
    The multi-layer electrochromic device of any preceding claim wherein the anodic electrochromic layer comprises Zr.
  11. 21
    The multi-layer electrochromic device of any preceding claim wherein the anodic electrochromic layer comprises Hf.
  12. 22
    The multi-layer electrochromic device of any preceding claim wherein the anodic electrochromic layer has a coloration efficiency absolute value of at least 19 cm 2 /C.
  13. 23
    The multi-layer electrochromic device of any preceding claim wherein the anodic electrochromic layer has a coloration efficiency in the range from -19 cm 2 /C to -60 cm 2 /C.
  14. 24
    The multi-layer electrochromic device of any preceding claim wherein the anodic electrochromic layer has a coloration efficiency in the range from -24 cm 2 /C to -32 cm 2 /C.
  15. 25
    The multi-layer electrochromic device of any preceding claim wherein anodic electrochromic layer has a bleached state voltage of at least 2V.
  16. 26
    The multi-layer electrochromic device of any preceding claim wherein the anodic electrochromic layer has a bleached state voltage of at least 3V.
Independent claims16