Organic photosensitive optoelectronic device with an exciton blocking layer
An organic photosensitive optoelectronic device having a plurality of cells disposed between a first electrode and a second electrode. Each cell includes a photoconductive organic hole transport layer adjacent to a photoconductive organic electron transport layer. A metal or metal substitute is disposed between each of the cells. At least one exciton blocking layer is disposed between the first electrode and the second electrode.
1. An organic photosensitive optoelectronic device comprising:
a first electrode and a second electrode;
a plurality of cells arranged in a stack disposed between the first electrode and the second electrode, each cell comprising a photoconductive organic hole transport layer adjacent to a photoconductive organic electron transport layer;
a metal or metal substitute disposed between each of the cells; and
at least one exciton blocking layer disposed between the first electrode and the second electrode.
2. The organic photosensitive optoelectronic device of claim 1 , wherein the metal or metal substitute is an elementally pure metal.
3. The organic photosensitive optoelectronic device of claim 1 , wherein the metal or metal substitute is a metal alloy.
4. The organic photosensitive optoelectronic device of claim 1 , wherein the metal or metal substitute is a transparent conducting oxide.
5. The organic photosensitive optoelectronic device of claim 1 , wherein the metal or metal substitute is a transparent conductive polymer.
6. The organic photosensitive optoelectronic device of claim 1 , wherein the metal or metal substitute disposed in the stack between at least one pair of the cells forms an electrode.
7. The organic photosensitive optoelectronic device of claim 1 , wherein the metal or metal substitute disposed in the stack between at least one pair of the cells forms a charge transfer layer.
8. The organic photosensitive optoelectronic device of claim 1 , wherein the plurality of cells are electrically connected in series.
9. The organic photosensitive optoelectronic device of claim 1 , wherein the plurality of cells are electrically connected in parallel.
10. The organic photosensitive optoelectronic device of claim 1 , wherein the plurality of cells are electrically connected in a combination of parallel and series.