Claims
- 1. A composition comprising a quinoxaline derivative having Formula I, shown in FIG. 1, wherein:
R1 and R2 are the same or different at each occurrence and are selected from H, F, Cl, Br, alkyl, heteroalkyl, alkenyl, alkynyl, aryl, heteroaryl, alkylenearyl, alkenylaryl, alkynylaryl, alkyleneheteroaryl, alkenylheteroaryl, alkynylheteroaryl, CnHaFb, OCnHaFb, C6HcFd, and OC6HcFd, or both of R5 together may constitute an arylene or heteroarylene group; a, b, c, and d are 0 or an integer such that a+b=2n+1, and c+d=5, n is an integer, and z is 0 or an integer from 1 through 4.
- 2. The composition of claim 1, wherein:
R1 and R2 are the same or different at each occurrence and are selected from H, F, Cl, Br, alkyl, heteroalkyl, aryl, heteroaryl, alkylenearyl, alkenylaryl, alkynylaryl, alkyleneheteroaryl, alkenylheteroaryl, alkynylheteroaryl, CnHaFb, OCnHaFb, C6HcFd, and OC6HcFd, or both of R5 together may constitute an arylene or heteroarylene group, and n is an integer from 1 through 12.
- 3. The composition of claim 1, wherein R1 is selected from phenylalkenyl, substituted phenylalkenyl, phenylalkynyl, and substituted phenylakynyl groups.
- 4. The composition of claim 1, wherein R1 is selected from alkylacetate and arylcarbonyl groups.
- 5. The composition of claim 1, wherein R1 is selected from alkyl groups having 1 through 12 carbon atoms.
- 6. The composition of claim 1, wherein R2 is selected from phenyl groups, substituted phenyl groups, pyridyl groups, and substituted pyridyl groups.
- 7. The composition of claim 1, wherein both of R2 together are selected from a biarylene group and a substituted biarylene group.
- 8. The composition of claim 7, wherein R2 together are selected from a biphenylene, a substituted biphenylene, a bipyridylene, and a substituted bipyridylene.
- 9. The composition of claim 1, wherein the quinoxaline derivative is selected from Formulae I(a) through I(i) and I(k) through I(ag) in FIG. 4.
- 10. The composition of claim 1, wherein the quinoxaline derivative is Formula I(j) in FIG. 4.
- 11. A composition selected having Formula II in FIG. 2, wherein:
R1 and R2 are the same or different at each occurrence and are selected from H, F, Cl, Br, alkyl, heteroalkyl, alkenyl, alkynyl, aryl, heteroaryl, alkylenearyl, alkenylaryl, alkynylaryl, alkyleneheteroaryl, alkenylheteroaryl, alkynylheteroaryl, CnHaFb, OCnHaFb, C6HcFd, and OC6HcFd, or both of R2 together may constitute an arylene or heteroarylene group; R3 is the same or different at each occurrence and is selected from a single bond and a group selected from alkylene, heteroalkylene, arylene, heteroarylene, arylenealkylene, and heteroarylenealkylene; Q is selected from a single bond and a multivalent group; a, b, c, and d are 0 or an integer such that a+b=2n+1, and c+d=5; m is an integer equal to at least 2; n is an integer; p is 0 or 1; and x is 0 or an integer from 1 through 3.
- 12. The composition of claim 11, wherein:
m is an integer from 2 through 10; n is an integer from 1 through 12; with the proviso that when Q is a single bond, p is 0.
- 13. The composition of claim 11, wherein:
R1 and R2 are the same or different at each occurrence and are selected from H, F, Cl, Br, alkyl, heteroalkyl, aryl, heteroaryl, alkylenearyl, alkenylaryl, alkynylaryl, alkyleneheteroaryl, alkenylheteroaryl, alkynylheteroaryl, CnHaFb, OCnHaFb, C6HcFd, and OC6HcFd, or both of R2 together may constitute an arylene or heteroarylene group; m is an integer from 2 through 10; n is an integer from 1 through 12; and p is 0.
- 14. The composition of claim 11 wherein Q is selected from a hydrocarbon group with at least two points of attachment, selected from an aliphatic group, a heteroaliphatic group, an aromatic group, and a heteroaromatic group.
- 15. The composition of claim 14 wherein Q is selected from alkylene groups, heteroalkylene groups, alkenylene groups, heteroalkenylene groups, alkynylene groups, and heteroalkynylene groups.
- 16. The composition of claim 11 wherein Q is selected from single-ring aromatic groups, multiple-ring aromatic groups, fused-ring aromatic groups, single-ring heteroaromatic groups, multiple-ring aromatic groups, fused-ring aromatic groups, arylamines, silanes and siloxanes.
- 17. The composition of claim 11 wherein Q is selected from Formulae V(a) through V(h) in FIG. 5.
- 18. The composition of claim 11, wherein R1 is selected from phenyl and substituted phenyl groups.
- 19. The composition of claim 18, wherein R1 is selected from substituted phenyl groups having at least one substituent selected from F, Cl, Br, alkyl groups, heteroalkyl groups, alkenyl groups, and alkynyl groups.
- 20. The composition of claim 11, wherein R1 is selected from alkylacetate and arylcarbonyl groups.
- 21. The composition of claim 11, wherein R1 is selected from alkyl groups having 1 through 12 carbon atoms.
- 22. The composition of claim 11, wherein R2 is selected from phenyl groups, substituted phenyl groups, pyridyl groups, and substituted pyridyl groups.
- 23. The composition of claim 11, wherein R2 together form a biarylene group.
- 24. The composition of claim 23, wherein the biarylene group is selected from biphenylene, substituted biphenylene, bipyridylene, and substituted bipyridylene.
- 25. The composition of claim 11, wherein R3 is selected from aryl, heteroaryl, alkyl, and heteroalkyl.
- 26. The composition of claim 11, wherein R3 is selected from phenyl and substituted phenyl.
- 27. The composition of claim 11, wherein R3 is selected from alkyl and heteroalkyl having from 1 through 12 carbon atoms.
- 28. The composition of claim 11 selected from Formulae II(b) through II(g) and II(i) through II(k) in FIG. 6.
- 29. The composition of claim 11 selected from Formulae II(a), II(h), II(l), and II(m).
- 30. A composition having Formula III in FIG. 3, wherein:
R1 and R2 are the same or different at each occurrence and are selected from H, F, Cl, Br, alkyl, heteroalkyl, alkenyl, alkynyl, aryl, heteroaryl, alkylenearyl, alkenylaryl, alkynylaryl, alkyleneheteroaryl, alkenylheteroaryl, alkynylheteroaryl, CnHaFb, OCnHaFb, C6HcFd, and OC6HcFd, or both of R5 together may constitute an arylene or heteroarylene group; R3 is the same or different at each occurrence and is selected from a single bond and a group selected from alkylene, heteroalkylene, arylene, heteroarylene, arylenealkylene, and heteroarylenealkylene; Q is selected from a single bond and a multivalent group; a, b, c, and d are 0 or an integer such that a+b=2n+1, and c+d=5; m is an integer equal to at least 2; n is an integer2; p is 0 or 1; and z is 0 or an integer from 1 through 4.
- 31. The composition of claim 30 wherein Q is selected from a hydrocarbon group with at least two points of attachment, selected from an aliphatic group, a heteroaliphatic group, an aromatic group, and a heteroaromatic group.
- 32. The composition of claim 31 wherein Q is selected from alkylene groups, heteroalkylene groups, alkenylene groups, heteroalkenylene groups, alkynylene groups, and heteroalkynylene groups.
- 33. The composition of claim 30 wherein Q is selected from singlering aromatic groups, multiple-ring aromatic groups, fused-ring aromatic groups, single-ring heteroaromatic groups, multiple-ring aromatic groups, fused-ring aromatic groups, arylamines, silanes and siloxanes.
- 34. The composition of claim 30 wherein Q is selected from Formulae V(a) through V(h) in FIG. 5.
- 35. The composition of claim 30, wherein R1 is selected from phenylakenyl, substituted phenylalkenyl, and phenylalkynyl, and substituted phenylakynyl groups.
- 36. The composition of claim 30, wherein R1 is selected from alkylacetate and arylcarbonyl groups.
- 37. The composition of claim 30, wherein R1 is selected from alkyl groups having 1 through 12 carbon atoms.
- 38. The composition of claim 30, wherein R2 is H.
- 39. The composition of claim 30, wherein R3 is selected from aryl, heteroaryl, alkyl, and heteroalkyl.
- 40. The composition of claim 30, wherein R3 is selected from phenyl and substituted phenyl.
- 41. The composition of claim 30, wherein R3 is selected from alkyl and heteroalkyl having from 1 through 12 carbon atoms.
- 42. An electronic device comprising a photoactive layer and a second layer, wherein at least one layer comprises a quinoxaline derivative having Formula I, shown in FIG. 1, wherein:
R1 and R2 are the same or different at each occurrence and are selected from H, F, Cl, Br, alkyl, heteroalkyl, alkenyl, alkynyl, aryl, heteroaryl, alkylenearyl, alkenylaryl, alkynylaryl, alkyleneheteroaryl, alkenylheteroaryl, alkynylheteroaryl, CnHaFb, OCnHaFb, C6HcFd, and OC6HcFd, or both of R5 together may constitute an arylene or heteroarylene group; a, b, c, and d are 0 or an integer such that a+b=2n+1, and c+d=5, n is an, and z is 0 or an integer from 1 through 4.
- 43. The device of claim 42, wherein the second layer comprises a quinoxaline derivative having Formula I, shown in FIG. 1, and further wherein:
R1 and R2 are the same or different at each occurrence and are selected from H, F, Cl, Br, alkyl, heteroalkyl, aryl, heteroaryl, alkylenearyl, alkenylaryl, alkynylaryl, alkyleneheteroaryl, alkenylheteroaryl, alkynylheteroaryl, CnHaFb, OCnHaFb, C6HcFd, and OC6HcFd, or both of R5 together may constitute an arylene or heteroarylene group, and n is an integer from 1 through 12.
- 44. The device of claim 42, wherein R1 is selected from phenylalkenyl, substituted phenylalkenyl, phenylalkynyl, and substituted phenylakynyl groups.
- 45. The device of claim 42, wherein R1 is selected from alkylacetate and arylcarbonyl groups.
- 46. The device of claim 42, wherein R1 is selected from alkyl groups having 1 through 12 carbon atoms.
- 47. The device of claim 42, wherein R2 is selected from phenyl groups, substituted phenyl groups, pyridyl groups, and substituted pyridyl groups.
- 48. The device of claim 42, wherein both of R2 together are selected from a biarylene group and a substituted biarylene group.
- 49. The device of claim 42, wherein R2 together are selected from a biphenylene, a substituted biphenylene, a bipyridylene, and a substituted bipyridylene.
- 50. The device of claim 42, wherein the quinoxaline derivative is selected from Formulae I(a) through I(i) and I(k) through I(ag) in FIG. 4.
- 51. The device of claim 42, wherein the quinoxaline derivative has Formula I(j) in FIG. 4.
- 52. An electronic device comprising a photoactive layer and a second layer, wherein at least one layer comprises a quinoxaline derivative selected from Formula II in FIG. 2 and Formula III in FIG. 3, wherein:
R1 and R2 are the same or different at each occurrence and are selected from H, F, Cl, Br, alkyl, heteroalkyl, alkenyl, alkynyl, aryl, heteroaryl, alkylenearyl, alkenylaryl, alkynylaryl, alkyleneheteroaryl, alkenylheteroaryl, alkynylheteroaryl, CnHaFb, OCnHaFb, C6HcFd, and OC6HcFd, or both of R2 together may constitute an arylene or heteroarylene group; R3 is the same or different at each occurrence and is selected from a single bond and a group selected from alkylene, heteroalkylene, arylene, heteroarylene, arylenealkylene, and heteroarylenealkylene; Q is selected from a single bond and a multivalent group; a, b, c, and d are 0 or an integer such that a+b=2n+1, and c+d=5; m is an integer equal to at least 2; n is an integer; p is 0 or 1; and x is 0 or an integer from 1 through 3.
- 53. The device of claim 52, wherein the second layer comprises a quinoxaline derivative having Formula II in FIG. 2, and further wherein:
m is an integer from 2 through 10; n is an integer from 1 through 12; with the proviso that when Q is a single bond, p is 0.
- 54. The device of claim 52, wherein the second layer comprises a quinoxaline derivative having Formula II in FIG. 2, and further wherein:
R1 and R2 are the same or different at each occurrence and are selected from H, F, Cl, Br, alkyl, heteroalkyl, aryl, heteroaryl, alkylenearyl, alkenylaryl, alkynylaryl, alkyleneheteroaryl, alkenylheteroaryl, alkynylheteroaryl, CnHaFb, OCnHaFb, C6HcFd, and OC6HcFd, or both of R2 together may constitute an arylene or heteroarylene group; m is an integer from 2 through 10; n is an integer from 1 through 12; and p is 0.
- 55. The device of claim 52 wherein Q is selected from a hydrocarbon group with at least two points of attachment, selected from an aliphatic group, a heteroaliphatic group, an aromatic group, and a heteroaromatic group.
- 56. The device of claim 52 wherein Q is selected from alkylene groups, heterealkylene groups, alkenylene groups, heteroalkenylene groups, alkynylene groups, and heteroalkynylene groups.
- 57. The device of claim 52 wherein Q is selected from single-ring aromatic groups, multiple-ring aromatic groups, fused-ring aromatic groups, single-ring heteroaromatic groups, multiple-ring aromatic groups, fused-ring aromatic groups, arylamines, silanes and siloxanes.
- 58. The device of claim 52, wherein Q is selected from Formulae V(a) through V(h) in FIG. 5.
- 59. The device of claim 52, wherein the quinoxaline derivative is selected from Formulae II(b) through II(g) and II(i) through II(k) in FIG. 6.
- 60. The device of claim 52, wherein the quinoxaline derivative is selected from Formulae II(a), II(h), II(l) and II(m).
- 61. An electronic device of claims 41-59, wherein the device is a light-emitting diode, light-emitting electrochemical cell, or a photodetector.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority from U.S. Provisional Application Serial No. 60/394767, filed Jul. 10, 2002, and U.S. Provisional Application Serial No. 60/458277, filed Mar. 28, 2003.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60394767 |
Jul 2002 |
US |
|
60458277 |
Mar 2003 |
US |