Counter electrode material for electrochromic devices
View Patent ↗Various embodiments herein relate to electrochromic devices, methods of fabricating electrochromic devices, and apparatus for fabricating electrochromic devices. In a number of cases, the electrochromic device may be fabricated to include a particular counter electrode material. The counter electrode material may include a base anodically coloring material. The counter electrode material may further include one or more halogens. The counter electrode material may also include one or more additives.
1. A method of fabricating an electrochromic stack, the method comprising:
forming a cathodically coloring layer comprising a cathodically coloring electrochromic material; and
forming an anodically coloring layer comprising an inorganic anodically coloring electrochromic material comprising one or more halogens, the anodically coloring layer optionally comprising one or more additives,
wherein the inorganic anodically coloring electrochromic material comprises at least one metal selected from the group consisting of chromium (Cr), manganese (Mn), iron (Fe), cobalt (Co), nickel (Ni), rhodium (Rh), ruthenium (Ru), vanadium (V), and iridium (Ir), and
wherein the optional one or more additives comprises a material selected from the group consisting of silver (Ag), arsenic (As), gold (Au), boron (B), cadmium (Cd), cesium (Cs), copper (Cu), europium (Eu), gallium (Ga), gadolinium (Gd), germanium (Ge), mercury (Hg), osmium (Os), lead (Pb), palladium (Pd), promethium (Pm), polonium (Po), platinum (Pt), radium (Ra), rubidium (Rb), terbium (Tb), technetium (Tc), thorium (Th), thallium (Tl), tungsten (W), and combinations thereof.
2. The method of claim 1 , wherein the metal in the inorganic anodically coloring electrochromic material is selected from the group consisting of Cr, Mn, Fe, Co, Ni, Rh, Ir, and combinations thereof.
3. The method of claim 2 , wherein the metal in the inorganic anodically coloring electrochromic material is Ni.
4. The method of claim 1 , wherein the anodically coloring layer comprises the optional one or more additives, wherein the optional one or more additives comprises a material selected from the group consisting of Ga, Gd, Ge, Cu, and combinations thereof.
5. The method of claim 4 , wherein the optional one or more additives comprises a material selected from the group consisting of Ga, Gd, Ge, and combinations thereof.
6. The method of claim 5 , wherein the optional one or more additives comprises Ge.
7. The method of claim 5 , wherein the optional one or more additives comprises Ga.
8. The method of claim 5 , wherein the optional one or more additives comprises Gd.
9. The method of claim 4 , wherein the optional one or more additives comprises Cu.
10. The method of claim 1 , wherein the anodically coloring layer comprises nickel tungsten oxide and the one or more halogens.
11. An electrochromic stack, comprising:
a cathodically coloring layer comprising a cathodically coloring material; and
an anodically coloring layer comprising an inorganic anodically coloring electrochromic material comprising one or more halogens, the anodically coloring layer optionally comprising one or more additives, wherein the inorganic anodically coloring electrochromic material comprises at least one metal selected from the group consisting of chromium (Cr), manganese (Mn), iron (Fe), cobalt (Co), nickel (Ni), rhodium (Rh), ruthenium (Ru), vanadium (V), and iridium (Ir), and wherein the optional one or more additives comprises a material selected from the group consisting of silver (Ag), arsenic (As), gold (Au), boron (B), cadmium (Cd), cesium (Cs), copper (Cu), europium (Eu), gallium (Ga), gadolinium (Gd), germanium (Ge), mercury (Hg), osmium (Os), lead (Pb), palladium (Pd), promethium (Pm), polonium (Po), platinum (Pt), radium (Ra), rubidium (Rb), terbium (Tb), technetium (Tc), thorium (Th), thallium (Tl), tungsten (W), and combinations thereof.
12. The electrochromic stack of claim 11 , wherein the metal in the inorganic anodically coloring electrochromic material is selected from the group consisting of Cr, Mn, Fe, Co, Ni, Rh, Ir, and combinations thereof.
13. The electrochromic stack of claim 11 , wherein the metal in the inorganic anodically coloring electrochromic material is selected from the group consisting of Ni, Ir, and combinations thereof.
14. The electrochromic stack of claim 13 , wherein the metal in the inorganic anodically coloring electrochromic material is Ni.
15. The electrochromic stack of claim 11 , wherein the anodically coloring layer comprises the one or more additives, and wherein the optional one or more additives comprises a material selected from the group consisting of Ga, Gd, Ge, Cu, and combinations thereof.
16. The electrochromic stack of claim 15 , wherein the optional one or more additives comprises Ge.
17. The electrochromic stack of claim 15 , wherein the optional one or more additives comprises Ga.
18. The electrochromic stack of claim 15 , wherein the optional one or more additives comprises Gd.
19. The electrochromic stack of claim 15 , wherein the optional one or more additives comprises Cu.
20. The electrochromic stack of claim 11 , wherein the anodically coloring layer comprises nickel tungsten oxide and the one or more halogens.