IP Library Granted Patent US 7,026,041
Granted Patent B2
US 7,026,041 · App. 11/035,818 · Granted Apr 11, 2006

Organic photosensitive optoelectronic device with an exciton blocking layer

Assignee: The Trustees of Princeton University
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Quick Facts
Patent No.
US 7,026,041
App. No.
11/035,818
Granted
Apr 11, 2006
Kind
B2
Abstract

Organic photosensitive optoelectronic devices (“OPODs”) are disclosed which include an exciton blocking layer to enhance device efficiency. Single heterostructure, stacked and wave-guide type embodiments are disclosed. Photodetector OPODs having multilayer structures and an exciton blocking layer are also disclosed. Guidelines for selection of exciton blocking layers are provided.

Claims (41)

1. An organic photosensitive optoelectronic device comprising:

two electrodes in superposed relation;

a hole transport layer between the two electrodes, the hole transport layer formed of a first photoconductive organic semiconductor material;

an electron transport layer between the two electrodes and adjacent to the hole transport layer, the electron transport layer formed of a second photoconductive organic semiconductor material; and

at least one exciton blocking layer between the two electrodes, and adjacent to at least one of the hole transport layer and the electron transport layer.

2. The device of claim 1 wherein the at least one exciton blocking layer is adjacent to the electron transport layer.

3. The device of claim 2 wherein the at least one exciton blocking layer comprises a hole blocking layer.

4. The device of claim 3 wherein:

the electron transport layer comprises 3,4,9,10-perylenetetracarboxylic-bis-benzimidazole;

the hole transport layer comprises copper phthalocyanine; and

the hole blocking layer comprises 2,9-dimethyl-4,7-diphenyl-1,10-phenanthroline.

5. The device of claim 2 wherein:

the electron transport layer comprises 3,4,9,10-perylenetetracarboxylic-bis-benzimidazole;

the hole transport layer comprises copper phthalocyanine; and the at least one exciton blocking layer comprises 2,9-dimethyl-4,7-diphenyl-1,10-phenanthroline.

6. The device of claim 1 wherein the at least one exciton blocking layer is adjacent to the hole transport layer.

7. The device of claim 6 wherein the at least one exciton blocking layer comprises an electron blocking layer.

8. The device of claim 7 wherein:

the electron transport layer comprises 3,4,9,10-perylenetetracarboxylic-bis-benzimidazole;

the hole transport layer comprises copper phthalocyanine; and

the electron blocking layer comprises a member selected from the group consisting of 4,4′,4″-tris{N,-(3-methylphenyl)-N-phenylamino}triphenylamine and polyethylene dioxythiophene.

9. The device of claim 6 wherein:

the electron transport layer comprises 3,4,9,10-perylenetetracarboxylic-bis-benzimidazole;

the hole transport layer comprises copper phthalocyanine; and

the at least one exciton blocking layer comprises a member selected from the group consisting of 4,4′,4″-tris{N,-(3-methylphenyl)-N-phenylamino}triphenylamine and polyethylene dioxythiophene.

10. The device of claim 1 wherein the at least one exciton blocking layer comprises a first exciton blocking layer and a second exciton blocking layer, wherein the first exciton blocking layer is adjacent to the electron transport layer, and the second exciton blocking layer is adjacent to the hole transport layer.

11. The device of claim 1 wherein the first photoconductive organic semiconductor material and the second photoconductive organic semiconductor material are selected to have spectral sensitivity in the visible spectrum.

12. The device of claim 1 wherein the electron transport layer, the hole transport layer, and the at least one exciton blocking layer are disposed between two parallel planar reflective surfaces which form a waveguide.

13. The device of claim 12 wherein one of the two reflective surfaces has an aperture to admit light incident upon the device.

14. The device of claim 12 having a transparent opening between the two reflective surfaces so that light is admitted to the device from a direction parallel to the planes of the reflective surfaces.

15. The device of claim 1 wherein the organic photosensitive optoelectronic device is an organic photodetector.

16. The device of claim 1 wherein the organic photosensitive optoelectronic device is an organic solar cell.

17. The device of claim 1 wherein the first photoconductive organic semiconductor material and the second photoconductive organic semiconductor material are somewhat intermixed.

18. A stacked organic photosensitive optoelectronic device comprised of a plurality of photosensitive optoelectronic subcells wherein at least one subcell comprises:

two electrodes in superposed relation;

a hole transport layer between the two electrodes, the hole transport layer formed of a first photoconductive organic semiconductor material;

an electron transport layer between the two electrodes and adjacent to the hole transport layer, the electron transport layer formed of a second photoconductive organic semiconductor material; and

at least one exciton blocking layer between the two electrodes, and adjacent to at least one of the hole transport layer and the electron transport layer.

19. The device of claim 18 wherein the electron transport layer comprises 3,4,9,10-perylenetetracarboxylic-bis-benzimidazole and the hole transport layer comprises copper phthalocyanine.

20. The device of claim 18 wherein the at least one exciton blocking layer comprises 2,9-dimethyl-4,7-diphenyl-1,10-phenanthroline, and is adjacent to the electron transport layer.

21. The device of claim 18 wherein the at least one exciton blocking layer comprises a member selected from the group consisting of 4,4′,4″-tris{N,-(3-methylphenyl)-N-phenylamino }triphenylamine and polyethylene dioxythiophene, and is adjacent to the hole transport layer.

22. The device of claim 18 wherein the first photoconductive organic semiconductor material and the second photoconductive organic semiconductor material are somewhat intermixed.

Assignments (1)
CONFIRMATORY LICENSE Recorded Mar 30, 2017
From: PRINCETON UNIVERSITY
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 042114/0194 →
Continuity (9)
Continuation 1075789600 · Jan 14, 2004
Continuation 1021266100 · Aug 5, 2002
Continuation 0944980100 · Nov 26, 1999
Continuation In Part 0913634200 · Aug 19, 1998
Continuation In Part 0913616600 · Aug 19, 1998
Continuation In Part 0913637700 · Aug 19, 1998
Continuation In Part 0913616500 · Aug 19, 1998
Continuation In Part 0913616400 · Aug 19, 1998
Related Publication 20050136232A1 · Jun 23, 2005