IP Library Granted Patent US 10,281,791
Granted Patent B2
US 10,281,791 · App. 15/208,402 · Granted May 7, 2019

Electrochromic device having three-dimensional electrode

Inventor: Tao Xu (Lisle, IL)
Assignee: Board of Trustees of Northers Illinois University
G02F1/155G02F1/134309G02F1/15G02F1/153G02F1/1521G02F1/1533G02F1/163G02F1/1523G02F1/1525G02F2001/134318G02F2001/1512G02F2001/1515G02F2001/1519G02F2001/1555G02F2201/123
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,281,791
App. No.
15/208,402
Granted
May 7, 2019
Kind
B2
Abstract

An electrochromic device comprises (i) a conductive layer, (ii) an electrochromic material, on the conductive layer, (iii) an electrolyte, on the electrochromic material, and (iv) a counter-electrode, on the electrolyte. The conductive layer has a surface roughness factor (SRF) of at least 10, and the conductive layer comprises a semi-metal.

Claims (54)

1. An electrochromic device, comprising:

(i) a conductive layer,

(ii) an electrochromic material, on the conductive layer

(iii) an electrolyte, on the electrochromic material, and

(iv) a counter-electrode, on the electrolyte,

wherein the conductive layer has a surface roughness factor (SRF) of at least 10,

the conductive layer comprises an n-type degenerate semiconductor, and

the electrochromic device has a response time of at most 500 ms.

2. The electrochromic device of claim 1 , wherein the electrochromic material is an organic electrochromic material.

3. The electrochromic device of claim 1 , wherein the conductive layer has a SRF of at least 100.

4. The electrochromic device of claim 1 , wherein the conductive layer is transparent.

5. The electrochromic device of claim 1 , wherein the n-type degenerate semiconductor comprises at least one member selected from the group consisting of fluorinated tin oxide, aluminum-zinc oxide, antimony-tin oxide and indium-tin oxide.

6. The electrochromic device of claim 1 , wherein the electrochromic material is a viologen.

7. The electrochromic device of claim 1 , further comprising a substrate, and the conductive layer is on the substrate.

8. The electrochromic device of claim 1 , wherein the electrolyte comprises one member selected from the group consisting of liquid electrolytes and polymer electrolytes.

9. The electrochromic device of claim 1 , wherein the electrolyte comprises one member selected from the group consisting of liquid electrolytes and ionic liquid electrolytes.

10. The electrochromic device of claim 1 , wherein the electrolyte comprises a non-aqueous solvent.

11. The electrochromic device of claim 1 , wherein the electrolyte comprises a salt.

12. The electrochromic device of claim 1 , further comprising a transparent substrate, and the conductive layer is on the substrate,

wherein the electrochromic material is an organic electrochromic material,

the conductive layer has a SRF of at least 400, and

the n-type degenerate semiconductor comprises at least one

member selected from the group consisting of fluorinated tin oxide, aluminum-zinc

oxide, antimony-tin oxide and indium-tin oxide.

13. The electrochromic device of claim 1 , having a coloring voltage of at most 1V.

14. An electrochromic display, comprising a plurality of the electrochromic devices of claim 1 .

15. The electrochromic display of claim 14 , wherein the plurality of electrochromic devices comprises electrochromic materials having at least 3 different colors.

16. An electrochromic device, comprising:

(i) a conductive layer,

(ii) an electrochromic material, on the conductive layer

(iii) an electrolyte, on the electrochromic material, and

(iv) a counter-electrode, on the electrolyte,

wherein the conductive layer has a surface roughness factor (SRF) of at least 10,

the electrochromic material is not Ni oxide or hydroxide,

the conductive layer comprises an n-type degenerate semiconductor, and

the electrochromic device has a response time of at most 500 ms.

17. The electrochromic device of claim 16 , wherein the conductive layer is transparent.

18. The electrochromic device of claim 16 , wherein the electrochromic material is a viologen.

19. The electrochromic device of claim 16 , having a coloring voltage of at most 1V.

20. A process of preparing an electrochromic device, comprising:

forming a conductive layer, having a SRF of at least 10,

applying an electrochromic material onto the conductive layer, and

preparing the electrochromic device using the conductive layer and the

electrochromic material,

wherein the electrochromic device comprises:

(i) a conductive layer,

(ii) an electrochromic material, on the conductive layer

(iii) an electrolyte, on the electrochromic material, and

(iv) a counter-electrode, on the electrolyte,

the conductive layer comprises an n-type degenerate semiconductor, and

the electrochromic device has a response time of at most 500 ms.

21. The process of preparing an electrochromic device of claim 20 , wherein the electrochromic material is an organic electrochromic material.

22. The process of preparing an electrochromic device of claim 20 , wherein the n-type degenerate semiconductor comprises at least one member selected from the group consisting of fluorinated tin oxide, aluminum-zinc oxide, antimony-tin oxide and indium-tin oxide.

23. The process of preparing an electrochromic device of claim 20 , wherein the electrochromic device has a coloring voltage of at most 1V.

Assignments (1)
CONFIRMATORY LICENSE Recorded Sep 2, 2016
From: NORTHERN ILLINOIS UNIVERSITY
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 039623/0828 →
Continuity (2)
Continuation 13972447 · Aug 21, 2013
Related Publication 20170003565A1 · Jan 5, 2017