Claims
- 1. An organic block polymer useful in an electroluminescent polymer device, comprising:
(a) an emissive polymer block that is consistently conjugated along the backbone of the emissive polymer block; and at least one of the following:
(b) a positive charge carrier polymer block that is consistently conjugated along the backbone of the positive charge carrier polymer block for transporting positive charge carriers to the emissive polymer block so that the positive charge carriers can combine with negative charge carriers to generate light (c) a negative charge carrier polymer block that is consistently conjugated along the backbone of the negative charge carrier polymer block for transporting negative charge carriers to the emissive polymer block so that the negative charge carriers can combine with positive charge carriers to generate light, and (d) a host polymer block that is consistently conjugated along the backbone of the host block for providing a matrix for emitter that affords Forster energy transfer and minimization of concentration quenching effects.
- 2. The organic block polymer of claim 1, wherein the emissive polymer block comprises a first monomer comprising a substituted or unsubstituted aromatic or heteroaromatic group.
- 3. The organic block polymer of claim 2, wherein the first monomer comprises a substituted or unsubstituted fluorene group.
- 4. The organic block polymer of claim 3, wherein the first monomer comprises a 2,7-linked dialkyl fluorene group.
- 5. The organic block polymer of claim 4, wherein the 2,7-linked dialkyl fluorene group is selected from the group consisting of a 9,9 dioctyl fluorene group and a 9,9 dihexyl fluorene group.
- 6. The organic block polymer of claims 2-5, wherein the emissive polymer block comprises a second monomer comprising a substituted or unsubstituted aromatic or heteroaromatic group.
- 7. The organic block polymer of claim 6, wherein the second monomer comprises a substituted or unsubstituted polycyclic aromatic group.
- 8. The organic block polymer of claim 7, wherein the substituted or unsubstituted polycyclic aromatic group is naphthalene or anthracene.
- 9. The organic block polymer of claim 6, wherein the second monomer comprises an aromatic or heteroaromatic diazine group fused to a benzene or thiophene group.
- 10. The organic block polymer of claim 9, wherein the aromatic or heteroaromatic diazine group fused to a benzene or thiophene group is a 2,7-linked 2,1,3-benzothiadiazole.
- 11. The organic block polymer of claims 1-10, wherein a positive charge carrier polymer block is present which comprises a third monomer comprising a substituted or unsubstituted aromatic or heteroaromatic group.
- 12. The organic block polymer of claim 11, wherein the third monomer comprises a substituted or unsubstituted fluorene group.
- 13. The organic block polymer of claim 12, wherein the third monomer comprises a 2,7-linked dialkyl fluorene group.
- 14. The organic block polymer of claim 13, wherein the 2,7-linked dialkyl fluorene group is selected from the group consisting of a 9,9 dioctyl fluorene group and a 9,9 dihexyl fluorene group.
- 15. The organic block polymer of claims 11-14, wherein the positive charge carrier polymer block comprises a fourth monomer comprising a substituted or unsubstituted aromatic or heteroaromatic group.
- 16. The organic block polymer of claim 15, wherein the fourth monomer comprises a stilbene or 1,4-diene without electron-withdrawing substitutents, tertiary amines, N,N,N′,N′-tetraaryl-1,4-diaminobenzene, N,N,N′,N′-tetraarylbenzidine, N-substituted-carbazoles, diarylsilanes, and thiophenes/furans/pyrroles without electron-withdrawing substitutents.
- 17. The organic block polymer of claim 16, wherein the fourth monomer is substituted with a substituant selected from the group consisting of C1-20 alkyls, C6-20 aryls and alkylaryls optionally substituted with C1-6 alkoxys and C6-12 aryloxys.
- 18. The organic block polymer of claim 15, wherein the fourth monomer comprises a triarylamine group having the general formula —Ar3N— wherein each Ar is the same or different and comprises a substituted or unsubstituted aromatic or heteroaromatic group.
- 19. The organic block polymer of claim 18, wherein the triarylamine group is N,N′-di(3-carboxomethoxyphenyl)benzidine.
- 20. The organic block polymer of claim 18, wherein the triarylamine group is N,N′-di(3-oxymethoxyphenyl)benzidine.
- 21. The organic block polymer of claims 1-20, further comprising a host polymer block that is consistently conjugated along the backbone of the host polymer block.
- 22. The organic block polymer of claim 21, wherein the host polymer block comprises a fifth monomer comprising a substituted or unsubstituted aromatic or heteroaromatic group.
- 23. The organic block polymer of claim 22, wherein the fifth monomer comprises a 2,7-linked dialkyl fluorene group.
- 24. The organic block polymer of claim 23, wherein the 2,7-linked dialkyl fluorene group is selected from the group consisting of a 9,9 dioctyl fluorene group and a 9,9 dihexyl fluorene group.
- 25. The organic block polymer of claims 21-24, wherein the host polymer block comprises a sixth monomer comprising a substituted or unsubstituted aromatic or heteroaromatic group.
- 26. The organic block polymer of claim 25, wherein the sixth monomer comprises a stilbene or 1,4-diene without electron-withdrawing substitutents, tertiary amines, N,N,N′,N′-tetraaryl-1,4-diaminobenzene, N,N,N′,N′-tetraarylbenzidine, N-substituted-carbazoles, diarylsilanes, and thiophenes/furans/pyrroles without electron-withdrawing substitutents.
- 27. The organic block polymer of claim 26, wherein the sixth monomer is substituted with a substituant selected from the group consisting of C1-20 alkyls, C6-20 aryls and alkylaryls optionally substituted with C1-6 alkoxys and C6-12 aryloxys.
- 28. The organic block polymer of claim 26, wherein the sixth monomer comprises a triarylamine group having the general formula —Ar3N— wherein each AR is the same or different and comprises a substituted or unsubstituted aromatic or heteroaromatic group.
- 29. The organic block polymer of claim 28, wherein the triarylamine group is N,N′-di(3-carbomethoxyphenyl)benzidine.
- 30. The organic block polymer of claim 28, wherein the triarylamine group is N,N′-di(4-methoxyphenyl)phenylenediamine.
- 31. The organic block polymer of claim 25, wherein the sixth monomer is substituted with an electron withdrawing group.
- 32. The organic block polymer of claim 31, wherein the electron withdrawing group is selected from the group consisting of F, cyano, sulfonyl, carboxy; moieties containing an imine linkage, condensed polycyclic aromatics such as acenaphthene, phenanthrene, anthracene, fluoranthene, pyrene, perylene, rubrene, chrysene, and corene as well as five-membered heterocylces containing imine linkages include oxazoles/isoxazoles, N-substituted-imidazoles/pyrazoles, thiazole/isothiazole, oxadiazoles, and N-substituted-triazoles and six-membered heterocycles containing imine linkages such as pyridines, pyridazines, pyrimidines, pyrazines, triazines, and tetrazenes as well as benzo-fused heterocycles containing imine linkages include benzoxazoles, benzothiazole, benzimidazoles, quinoline, isoquinolines, cinnolines, quinazolines, quinoxalines, phthalazines, benzothiadiazoles, benzotriazines, phenazines, phenanthridines, and, acridines.
- 33. The organic block polymer of claims 1-10, wherein the monomer groups of the emissive polymer block are essentially not comprised of a stilbene or 1,4-diene without electron-withdrawing substitutents, tertiary amines, N,N,N′,N′-tetraaryl-1,4-diaminobenzene, N,N,N′,N′-tetraarylbenzidine, N-substituted-carbazoles, diarylsilanes, and thiophenes/furans/pyrroles without electron-withdrawing substitutents.
- 34. The organic block polymer of claims 1-10, wherein the monomer groups of the emissive polymer block are essentially not comprised of a triarylamine group having the general formula —Ar3N— wherein each Ar is the same or different and comprises a substituted or unsubstituted aromatic or heteroaromatic group.
- 35. The organic block polymer of claims 21-32, wherein the monomer groups of the emissive polymer block are essentially not comprised of a stilbene or 1,4-diene without electron-withdrawing substitutents, tertiary amines, N,N,N′,N′-tetraaryl-1,4-diaminobenzene, N,N,N′,N′-tetraarylbenzidine, N-substituted-carbazoles, diarylsilanes, and thiophenes/furans/pyrroles without electron-withdrawing substitutents.
- 36. The organic block polymer of claims 21-32, wherein the monomer groups of the emissive polymer block are essentially not comprised of a triarylamine group having the general formula —Ar3N— wherein each Ar is the same or different and comprises a substituted or unsubstituted aromatic or heteroaromatic group.
- 37. An electroluminescent polymer device comprising an anode, a cathode and the electroluminescent polymer of any of the preceding claims positioned between the anode and the cathode.
- 38. A polymer field effect transistor that includes a semiconducting polymer positioned between and in electrical contact with a drain and a source, wherein the semiconducting polymer comprises a block copolymer that is consistently conjugated along its backbone.
- 39. A process of making the block polymers of claim 1 by reacting the monomers under to build individual blocks separately and then combining and reacting the individual blocks to form a single component block polymer.
- 40. A process of making the block polymers of claim 1 by reaction of a first set of monomers to form the first block, followed by sequentially adding and reacting additional sets of monomers for each subsequent block to form a single component, block polymer.
CROSS REFERENCE STATEMENT
[0001] This application claims the benefit of U.S. Provisional Application No. 60/304,336, filed Jul. 10, 2001.
GOVERNMENT CONTRACT
[0002] This invention was made with government support under Contract Number N00421-98C-1 187. The government has certain rights in the invention.
Provisional Applications (1)
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Number |
Date |
Country |
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60304336 |
Jul 2001 |
US |