High efficiency, color neutral, semi-transparent organic photovoltaics for energy harvesting windows
View Patent ↗An organic photovoltaic device comprises a first electrode, at least one organic heterojunction layer positioned over the first electrode, a second electrode positioned over the organic heterojunction layer, and a thin film stack positioned over the second electrode, comprising a plurality of sublayers of a first dielectric material alternating with a plurality of sublayers of a second dielectric material, wherein at least one of the plurality of sublayers of the first dielectric material has a thickness that is different from another of the plurality of sublayers of the first dielectric material, wherein the organic photovoltaic device has a mean transmittance of between 10% and 100% for light between 420 nm and 670 nm, with a variance of ±10%, and wherein an index contrast between the sublayers in the thin film stack is at least 0.1. A method of fabricating an organic photovoltaic device is also disclosed.
1. An organic photovoltaic device, comprising:
a substrate including a UV stop filter positioned on a light incident side of the substrate;
a first electrode positioned over the substrate;
at least one organic heterojunction layer positioned over the first electrode;
a second electrode positioned over the organic heterojunction layer; and
a thin film stack positioned over the second electrode, comprising a plurality of sublayers of a first dielectric material alternating with a plurality of sublayers of a second dielectric material;
wherein at least one of the plurality of sublayers of the first dielectric material has a thickness that is different from another of the plurality of sublayers of the first dielectric material; and
wherein the UV stop filter comprises an MgF 2 sublayer between a ZnO sublayer and a SiO 2 sublayer.
2. The organic photovoltaic device of claim 1 , wherein the organic photovoltaic device has a mean transmittance of between 10% and 100% for light between 420 nm and 670 nm, with a variance of ±10%.
3. The organic photovoltaic device of claim 1 , wherein each of the sublayers of the first and second materials have different thicknesses from one another.
4. The organic photovoltaic device of claim 1 , wherein the organic photovoltaic device further comprises a UV-reflective coating positioned below the first electrode, configured to reflect or absorb at least 90% of light at wavelengths less than 400 nm.
5. The organic photovoltaic device of claim 1 , wherein the thin film stack is configured to reflect at least 40% of light at wavelengths between 670 nm and 2000 nm.
6. The organic photovoltaic device of claim 1 , wherein the first material comprises CBP and the second material comprises MgF 2 .
7. The organic photovoltaic device of claim 1 , wherein the first and second electrodes comprise ITO.
8. The organic photovoltaic device of claim 1 , wherein a contrast between indices of refraction of the first and second dielectric materials is at least 0.2.
9. The organic photovoltaic device of claim 1 , wherein a contrast between indices of refraction of the first and second dielectric materials is at least 0.3.
10. The organic photovoltaic device of claim 1 , wherein a contrast between indices of refraction of the first and second dielectric materials is at least 0.4.
11. The organic photovoltaic device of claim 1 , wherein the thin film stack has no periodicity of layer thicknesses or indices of refraction.
12. The organic photovoltaic device of claim 1 , wherein the thin film stack is configured to reflect at least 90% of light at wavelengths between 670 nm and 2000 nm.
13. An organic photovoltaic device, comprising:
a substrate including a UV stop filter positioned on a light incident side of the substrate;
a first electrode positioned over the substrate;
at least one organic heterojunction layer positioned over the first electrode;
a second electrode positioned over the organic heterojunction layer; and
a thin film stack positioned over the second electrode, comprising a plurality of sublayers of a first dielectric material alternating with a plurality of sublayers of a second dielectric material;
wherein the UV stop filter comprises an MgF 2 sublayer between a ZnO sublayer and a SiO 2 sublayer.
14. The organic photovoltaic device of claim 13 , wherein each sublayer in the plurality of sublayers has a different thickness from every other sublayer of the plurality of sublayers.
15. The organic photovoltaic device of claim 13 , wherein the organic photovoltaic device has a mean transmittance of between 10% and 100% for light in a first subset of a spectrum with a variance of ±10%, wherein the first subset of the spectrum is selected from red (620 nm-670 nm), green (490 nm-570 nm), or blue (440 nm-490 nm).
16. The organic photovoltaic device of claim 13 , further comprising a reflector positioned between the second electrode and the thin film stack.
17. The organic photovoltaic device of claim 16 , wherein the reflector is a distributed Bragg reflector (DBR).
18. The organic photovoltaic device of claim 13 , wherein the thin film stack is positioned adjacent to the second electrode.
19. The organic photovoltaic device of claim 13 , wherein the thin film stack comprises a material selected from MgF 2 , CBP, SiO 2 , TiOx, ZnS, SiN, or Al 2 O 3 .
20. The organic photovoltaic device of claim 1 , wherein a contrast between an index of refraction of the first dielectric material and an index of refraction of the second dielectric material in the thin film stack is at least 0.1.