Electrochromic device including lithium-rich anti-perovskite material
An electrochromic device includes a light transmissive first substrate, a working electrode disposed on the first substrate, a light transmissive second substrate facing the first substrate, a counter electrode disposed on the second substrate, and a lithium-rich anti-perovskite (LiRAP) material disposed between the first and second substrates. The LiRAP material includes an ionically conductive and electrically insulating LiRAP material.
1. An electrochromic (EC) device comprising:
a light transmissive first substrate;
a working electrode disposed on the first substrate;
a light transmissive second substrate facing the first substrate;
a counter electrode disposed on the second substrate;
a lithium-rich anti-perovskite (LiRAP) material disposed between the first and second substrates, the LiRAP material comprising an ionically conductive and electrically insulating LiRAP material; and
a solid state electrolyte disposed between the counter electrode and the working electrode;
wherein the LiRAP material comprises a LiRAP layer disposed between the electrolyte and the counter electrode; and
wherein the LiRAP layer has a thickness of two microns or less.
2. The EC device of claim 1 , wherein the LiRAP layer has a thickness ranging from about 2 nanometers to about 200 nanometers.
3. An electrochromic (EC) device comprising:
a light transmissive first substrate;
a working electrode disposed on the first substrate;
a light transmissive second substrate facing the first substrate;
a counter electrode disposed on the second substrate;
a lithium-rich anti-perovskite (LiRAP) material disposed between the first and second substrates, the LiRAP material comprising an ionically conductive and electrically insulating LiRAP material; and
a solid state electrolyte disposed between the counter electrode and the working electrode;
wherein the LiRAP material comprises a LiRAP layer disposed between the electrolyte and the working electrode; and
wherein the LiRAP layer has a thickness of two microns or less.
4. The EC device of claim 3 , wherein the LiRAP layer has a thickness ranging from about 2 nanometers to about 200 nanometers.
5. An electrochromic (EC) device comprising:
a light transmissive first substrate;
a working electrode disposed on the first substrate;
a light transmissive second substrate facing the first substrate;
a counter electrode disposed on the second substrate;
a lithium-rich anti-perovskite (LiRAP) material disposed between the first and second substrates, the LiRAP material comprising an ionically conductive and electrically insulating LiRAP material; and
a solid state electrolyte disposed between the counter electrode and the working electrode;
wherein the LiRAP material forms a matrix in which nanostructures of the counter electrode are disposed, the LiRAP material and the nanostructures of the counter electrode form a composite counter electrode, or the LiRAP material forms shells around the nanostructures of the counter electrode.
6. The EC device of claim 5 , wherein the LiRAP material is represented by the formula Li 3 OX, wherein X is F, Cl, Br, I, or any combination thereof.
7. The EC device of claim 5 , wherein the LiRAP material comprises Li 3 OI.
8. The EC device of claim 5 , wherein the LiRAP material forms the matrix in which the nanostructures of the counter electrode are disposed.
9. The EC device of claim 5 , wherein the LiRAP material and the nanostructures of the counter electrode form the composite counter electrode.
10. The EC device of claim 5 , wherein the LiRAP material forms the shells around the nanostructures of the counter electrode.
11. An electrochromic (EC) device comprising:
a light transmissive first substrate;
a working electrode disposed on the first substrate;
a light transmissive second substrate facing the first substrate;
a counter electrode disposed on the second substrate; and
a lithium-rich anti-perovskite (LiRAP) material disposed between the first and second substrates, the LiRAP material comprising an ionically conductive and electrically insulating LiRAP material;
wherein the LiRAP material directly contacts the working electrode and the counter electrode and is configured to operate as an electrolyte in the EC device.
12. The EC device of claim 11 , wherein the LiRAP material is in the form of a layer having a thickness ranging from about 5 microns to about 20 microns.
13. The EC device of claim 12 , wherein a polymer electrolyte is not disposed between the working electrode and the counter electrode.