Claims
- 1. A process for forming a light emitting polymer comprising photopolymerization of a reactive mesogen having the formula:
- 2. A process according to claim 1, wherein said photopolymerization utilises UV radiation.
- 3. A process according to claim 1, wherein the photopolymerization involves cyclopolymerization.
- 4. A process according to claim 1, wherein said chromophore (A) is selected from the group consisting of fluorene, vinylenephenylene, anthracene, perylene and any derivatives thereof.
- 5. A process according to claim 1, wherein said spacer (S) is an organic chain.
- 6. A process according to claim 5, wherein said organic chain is selected from the group consisting of aliphatic, amine, ester and ether linkages and any derivatives thereof.
- 7. A process according to claim 1, wherein the photopolymerization involves radicalisation of an endgroup (B) to form an initial radical having the general formula as shown below:
- 8. A process according to claim 7, wherein the B. radicalised endgroup of a first monomer reacts with an unradicalised endgroup (B) of a second monomer to form a cyclic entity.
- 9. A process according to claim 8, wherein the reaction of the B. radicalised endgroup of the first monomer with the unradicalised endgroup (B) of the second monomer is sterically controlled.
- 10. A process according to claim 1, wherein the endgroup (B) comprises a diene.
- 11. A process according to claim 10, wherein the diene is selected from the group consisting of 1,4 dienes, 1,5 dienes and 1,6 dienes.
- 12. A process according to claim 10, wherein the diene functionalities are separated by an aliphatic linkage.
- 13. A process according to claim 10, wherein the diene functionalities are separated by an inert linkage selected from the group consisting of ether and amine linkages.
- 14. A process according to claim 10, wherein the reactive mesogen has the general formula:
- 15. A process according to claim 14, wherein
X is O; S2 is a linear alkyl chain; Y is CO2; and Z is selected from the group consisting of 1,4, 1,5 and 1,6 dienes.
- 16. A process according to claim 14, wherein the reactive mesogen has the general formula:
- 17. A process according to claim 16, wherein the reactive mesogen has the formula:
- 18. A process according to claim 10, wherein the reactive mesogen has the general formula:
- 19. A process according to claim 18, wherein
X is O; S2 is a linear alkyl chain; Y is CO2; and Z is selected from the group consisting of 1,4, 1,5 and 1,6 dienes.
- 20. A process according to claim 19, wherein R is selected from the group consisting of
- 21. A process according to claim 18, wherein the reactive mesogen has the formula:
- 22. A process according to claim 22, wherein the reactive mesogen is selected from the group consisting of
- 23. A process according to claim 10, wherein the reactive mesogen has the general formula:
- 24. A process according to claim 23, wherein
X is O; S2 is a linear alkyl chain; Y is CO2; and Z is selected from the group consisting of 1,4, 1,5 and 1,6 dienes.
- 25. A process according to claim 24, wherein R is selected from the group consisting of
- 26. A process according to claim 23, wherein the reactive mesogen has the formula:
- 27. A process according to claim 23, wherein the reactive mesogen has the formula:
- 28. A process according to claim 23, wherein the reactive mesogen has the formula:
- 29. A process according to claim 1, wherein the photopolymerization process is conducted at room temperature.
- 30. A process according to claim 1, additionally comprising doping with photoactive dyes.
- 31. A light emitting polymer obtainable by the process of claim 1.
- 32. A light emitting polymer according to claim 31, in the form of an insoluble, cross-linked network.
- 33. A light emitting polymer according to claim 31, in the form of a liquid crystal.
- 34. A light emitting polymer according to claim 33, in the form of a liquid crystal aligned to emit polarised light.
- 35. A light emitting polymer according to claim 31, comprising from 5 to 50 monomeric units.
- 36. A light emitting polymer according to claim 31, comprising uniaxially aligned chromophores.
- 37. A process for applying a light emitting polymer to a surface comprising
applying a reactive mesogen to said surface; and photopolymerizing said reactive mesogen in situ to form the light emitting polymer, wherein the reactive mesogen has the formula: B—S-A-S—B (general formula 1) wherein A is a chromophore; S is a spacer; and B is an endgroup which is susceptible to photopolymerization.
- 38. A process according to claim 37, comprising applying the reactive mesogen to the surface by a spin-coating process.
- 39. A process according to claim 37, additionally comprising applying a copolymer incorporating both linear rod-like hole-transporting and photoactive side chains to the surface.
- 40. A process according to claim 37, wherein the surface is a photoalignment layer.
- 41. A surface-coated with a light emitting polymer obtainable by the method according to claim 37.
- 42. An intermediate compound for use in making a light emitting polymer comprising 2,7-bis[5-(4-hydroxyphenyl)thien-2-yl]-9,9-dipropylfluorene (key intermediate 1).
- 43. An intermediate compound for use in making a light emitting polymer comprising 9,9-diethyl-2,7-bis(4-hydroxybiphenyl-4′-yl)fluorene (key intermediate 2).
Priority Claims (1)
| Number |
Date |
Country |
Kind |
| 0115986.2 |
Jun 2001 |
GB |
|
Parent Case Info
[0001] This application is a continuation-in-part of Ser. No. 09/898,748 filed Jul. 3, 2001 and claims priority from GB Application No. 0115986.2 filed Jun. 29, 2001.
Continuation in Parts (1)
|
Number |
Date |
Country |
| Parent |
09898748 |
Jul 2001 |
US |
| Child |
10187381 |
Jul 2002 |
US |