Claims
- 1. A method for increasing the fluorous nature of an organic compound, comprising:
reacting the organic compound with at least one second compound having the formula: X—CR1R2—C6H5-m—[Wp(CH2)nRf]m to create a first fluorous tagged organic compound, wherein Rf is a fluorous group, X is selected from the group consisting of a leaving group, a nucleophilic group and an electrophilic group, R1 and R2 are independently, the same or different, one of hydrogen, linear alkyl, branched alkyl, phenyl, C6H5-q(W′)q, C6H5-m′[Wp′(CH2)n′Rf]m′ and C6H5-m″[Wp″(CH2)n″Rf]m″, m, m′ and m″ are each integers from 1 to 5, n, n′ and n″ are each integers from 0 to 5, p, p′ and p″ each have a value of 0 or 1, q is an integer from 0 to 5, W is a grouping of atoms selected from the group consisting of O, S, NR3, CR4R5, and SiR6R7, wherein when W is SiR6R7 and R1 and R2 are each hydrogen, X is not one of Br, N-imidazolyl and —OH, and W′ is a grouping of atoms selected from the group consisting of OR8, SR9, NR10R11, CR12R13R14, and SiR15R16R17, wherein R3, R4, R5, R8, R9, R10, R11, R12, R13, and R14 are independently, the same or different, one of hydrogen, linear alkyl, branched alkyl, aryl, benzyl and —(CH2)n′41 Rf and R6, R7, R15, R16, and R17 are independently, the same or different, one of linear alkyl, branched alkyl, aryl, benzyl and —(CH2)n′″Rf, wherein n′″ in an integer from 0 to 5, the organic compound having at least one functional group reactive with group X on the second compound forming at least one chemical bond between the organic compound and the second compound resulting in the first fluorous tagged organic compound wherein the fluorous nature of the first fluorous tagged organic compound is increased relative to the organic compound to enable separation of the first fluorous tagged organic compound from at least one other compound by using a fluorous separation technique.
- 2. The method of claim 1, further comprising reducing the fluorine content of a second fluorous tagged organic compound, wherein the second fluorous tagged organic compound is produced from subsequent chemical transformations on the first fluorous tagged organic compound.
- 3. The method of claim 2, wherein the fluorine content of the second fluorous tagged organic compound is reduced by removing at least one grouping of atoms having a structure selected from the group consisting of: —CR1R2—C6H5-m—[Wp(CH2)nRf]m, —C6H5-m—[Wp(CH2)nRf]m, —[Wp(CH2)nRf]m, (CH2)nRf, and Rf from the second fluorous tagged organic compound.
- 4. The method of claim 1 wherein X is a leaving group selected from the group consisting of a halide, a methane sulfonate, a p-toluenesulfonate, a trifluoromethanesulfonate and R18SO3—, wherein R18 is one of linear alkyl, branched alkyl, aryl, benzyl, and —(CH2)n″″Rf, wherein n″″ in an integer from 0 to 5.
- 5. The method of claim 1 wherein X is a nucleophilic group selected from the group consisting of —OH, —NH2, —NHR19, —NR19R20, —NHC(═NH)NH2, —SH, —SR19, —NH(CH2)n″″NH2, and —NH(CH2)n″″N((CH2)n″″NH2)2, wherein n″″ is an integer from 1 to 5, and R19 and R20 are independently, the same or different, one of a linear alkyl, a branched alkyl, an aryl and a benzyl group.
- 6. The method of claim 1 wherein X is an electrophilic group comprising —NCZ, wherein Z is one of oxygen and sulfur.
- 7. The method of claim 1 wherein Rf is a fluorous group selected from the group consisting of a perfluorocarbon, a fluorohydrocarbon, a fluorinated ether and a fluorinated amine.
- 8. The method of claim 1 wherein X is a leaving group and R1 and R2 are each hydrogen.
- 9. The method of claim 1 wherein X is a leaving group and R1 and R2 are independently, the same or different, one Of C6H5-m′[Wp′(CH2)n′Rf]m′ and C6H5-m″[Wp″(CH2)n″Rf]m″.
- 10. The method of claim 1 wherein X is —SH.
- 11. The method of claim 1 wherein X is one of NR21R22 and NR21R22R23+Y−, wherein R21, R22 and R23 are independently, the same or different, one of a hydrogen, a linear alkyl, a branched alkyl and a benzyl group and Y is a counter anion selected from the group consisting of Cl−, Br−, I− and CO32−.
- 12. The method of claim 1 wherein X is —OH, R1 is hydrogen and R2 is one of H and C6H5-q(W′)q.
- 13. The method of claim 1 wherein X is —NH2, R1 is hydrogen and R2 is C6H5-q(W′)q.
- 14. The method of claim 1 wherein X is —NH(CH2)n″″NH2.
- 15. The method of claim 1 wherein X is —NH(CH2)n″″N((CH2)n″″NH2)2.
- 16. The method of claim 1 wherein X is —NHC(═N)NH2.
- 17. The method of claim 1 wherein X is —SH and R1 and R2 are each hydrogen.
- 18. The method of claim 1 wherein X is —SR24, wherein R24 is one of a linear alkyl, a branched alkyl, an aryl, and a benzyl group.
- 19. The method of claim 1 wherein X is —NCZ, wherein Z is one of O and S, and R1 and R2 are each hydrogen.
- 20. A method for increasing the fluorous nature of an organic compound, comprising:
reacting the organic compound with at least one second compound having the formula: XCO2CH2Rd to create a first fluorous tagged organic compound, wherein X is a leaving group and Rd is selected from the group consisting of: a) —CH═CH—(CH2)nRf, 161c) —C6H5-m″[Wp(CH2)nRf]m″, wherein Rf and Rf′ are each fluorous groups, m is an integer from 1 to 4, m′ is an integer from 0 to 4, m″ is an integer from 1 to 5, n and n′ are each integers from 0 to 5, p and p′ each have a value of 0 or 1, and W and W′ are groupings of atoms each selected from the group consisting of O, S, NR25, CR26R27, and SiR28R29, wherein R25, R26 and R27 are independently, the same or different, one of hydrogen, linear alkyl, branched alkyl, aryl, benzyl and —(CH2)nRf, and R28 and R29 are independently, the same or different, one of linear alkyl, branched alkyl, aryl, benzyl and —(CH2)nRf, the organic compound having at least one functional group reactive with group X on the second compound forming at least one chemical bond between the organic compound and the second compound resulting in the first fluorous tagged organic compound wherein the fluorous nature of the first fluorous tagged organic compound is increased relative to the organic compound to enable separation of the first fluorous tagged organic compound from at least one other compound by using a fluorous separation technique.
- 21. The method of claim 20, further comprising reducing the fluorine content of a second fluorous tagged organic compound, wherein the second fluorous tagged organic compound is produced from subsequent chemical transformations on the first fluorous tagged organic compound.
- 22. The method of claim 21, wherein the fluorine content of the second fluorous tagged organic compound is reduced by removing at least one grouping of atoms having a structure selected from the group consisting of: —CO2CH2Rd, —OCH2Rd, Rd, and Rf from the second fluorous tagged organic compound.
- 23. The method of claim 20 wherein X is a leaving group selected from the group consisting of a halide, —N3, —CN, —OR, —ONH2, —ONHR30, —ONR2, —O2CR30, —O2COR30, —O2CNR302, —SR30, —OC(S)R30, R30CS2—, —SC(O)SR30, —SCS2R30, —OC(O)SR30, —OC(S)OR30, —SC(S)OR30, R30SO2—, R30SO3—, R30OSO2—, R30OSO3—, R30PO3—, R30PO3—, an N-imidazolyl group, an N-triazolyl group, an N-benzotriazolyl group, a benzotriazolyloxy group, an imidazolyloxy group, an N-imidazolinone group, an N-imidazolone group, an N-imidazolinethione group, an N-succinimidyl group, an N-phthalimidyl group, an N-succinimidyloxy group, an N-phthalimidyloxy group, —ON═C(CN)R30, and a 2-pyridyloxy group, wherein R30 is one of linear alkyl, branched alkyl, aryl, benzyl, and —(CH2)n″Rf, wherein n″ in an integer from 0 to 5.
- 24. The method of claim 20 wherein Rf and Rf′ are independently, the same or different, a fluorous group selected from the group consisting of a perfluorocarbon, a fluorohydrocarbon, a fluorinated ether and a fluorinated amine.
- 25. The method of claim 20 wherein Rd is —CH═CH—(CH2)nRf.
- 26. The method of claim 20 wherein Rd is
- 27. The method of claim 20 wherein Rd is —C6H5-m″[Wp(CH2)nRf]m″.
- 28. A method for increasing the fluorous nature of an organic compound, comprising:
reacting the organic compound with at least one fluorous nitrogen containing compound having the formula: R31R32N(CH2)nRf to create a first fluorous tagged organic compound, wherein n is an integer from 0 to 5, Rf is a fluorous group, and R31R32 is selected from the group consisting of: a) —(CH2)mW(CH2)m′—, wherein m and m′ are each integers between 2 and 4, W is one of CH2, O, S, NH, and NR33, wherein R33 is one of a linear alkyl, a branched alkyl and a benzyl group, 163 wherein m″, and m′″ are each integers from 0 to 3, 164 wherein W′ is a grouping of atoms selected from the group consisting of O, S, NR34, CR35R36, and SiR37R38, p has a value of 0 or 1, n′ is an integer from 0 to 5, m″″ is an integer from 0 to 4, R34, R35, and R36 are independently, the same or different, one of hydrogen, linear alkyl, branched alkyl, aryl, benzyl and —(CH2)nRf, and R37 and R38 are independently, the same or different, one of linear alkyl, branched alkyl, aryl, benzyl and —(CH2)nRf, d) alkyl and pyridyl, e) hydrogen and —(CH2)n″NH2, wherein n″ is an integer from 1 to 5, f) hydrogen and —(CH2)n″N[(CH2)n″NH2]2, and g) —(CH2)n′″OH, and —(CH2)n″″OH, wherein n′″ and n″″ are each integers between 1 and 5, the organic compound having at least one functional group reactive with at least one N or —OH group on the second compound forming at least one chemical bond between the organic compound and the second compound resulting in the first fluorous tagged organic compound wherein the fluorous nature of the first fluorous tagged organic compound is increased relative to the organic compound to enable separation of the first fluorous tagged organic compound from at least one other compound by using a fluorous separation technique.
- 29. The method of claim 28, further comprising reducing the fluorine content of a second fluorous tagged organic compound, wherein the second fluorous tagged organic compound is produced from subsequent chemical transformations on the first fluorous tagged organic compound.
- 30. The method of claim 29, wherein the fluorine content of the second fluorous tagged organic compound is reduced by removing at least one grouping of atoms having a structure selected from the group consisting of: R31R32N(CH2)nRf, —N(CH2)nRf, —(CH2)nRf, and Rf from the second fluorous tagged organic compound.
- 31. The method of claim 28 wherein Rf is a fluorous group selected from the group consisting of a perfluorocarbon, a fluorohydrocarbon, a fluorinated ether and a fluorinated amine.
- 32. The method of claim 28 wherein the fluorous nitrogen containing compound is a cyclic amine.
- 33. The method of claim 28 wherein R31R32 is —(CH2)mW(CH2)m′—.
- 34. The method of claim 28 wherein R31R32 is
- 35. The method of claim 28 wherein R31R32 is
- 36. The method of claim 28 wherein R31 is one of a linear alkyl and a branched alkyl, and R32 is pyridyl.
- 37. The method of claim 28 wherein R31 is hydrogen and R32 is —(CH2)n NH2.
- 38. The method of claim 28 wherein R31 is hydrogen and R32 is —(CH2)n″N[(CH2)n″NH2]2.
- 39. The method of claim 28 wherein R31 is —(CH2)n′″OH, and R32 is —(CH2)n″″OH.
- 40. A method for increasing the fluorous nature of an organic compound, comprising:
reacting the organic compound with at least one second compound having the formula: X—C6H5-m—[Wp(CH2)nRf]m to create a first fluorous tagged organic compound, wherein Rf is a fluorous group, m is an integer from 1 to 5, n is an integer from 0 to 5, p has a value of 0 or 1, and W is a grouping of atoms selected from the group consisting of O, S, NR39, CR40R41, and SiR42R43, wherein when W is O, X is a grouping of atoms selected from the group consisting of —SO2NHNH2, —CHO when p is 1, —SH, —(CH2)n′SH, —C(═NRB)C6H4Y, —C(═O)CH2C(═O)R44, —COCl, —SO2Cl, —OH, —NCZ, and —SO3H, wherein when W is one of S, NR39, CR40R41, and SiR42R43, X is a grouping of atoms selected from the group consisting of —SO2NH2, —SO2NHNH2, —CHO when p is 1, —SH, —(CH2)n″SH, —C(═NRB)C6H4Y, —C(═O)CH2C(═O)R44, —COCl, —SO2Cl, —OH, —NCZ, and —SO3H, wherein n′ is an integer from 2 to 5, r is an integer from 0 to 2, Z is one of O and S, Y is one of an electron withdrawing group, a hydrogen and an alkyl group, RB is one of hydrogen, alkyl, aryl and hydroxyl, R44 is one of linear alkyl, branched alkyl and benzyl, R39, R40 and R41 are independently, the same or different, one of hydrogen, linear alkyl, branched alkyl, aryl, benzyl and —(CH2)nRf, and R42 and R43 are independently, the same or different, one of linear alkyl, branched alkyl, aryl, benzyl and —(CH2)nRf, the organic compound having at least one functional group reactive with group X on the second compound forming at least one chemical bond between the organic compound and the second compound resulting in the first fluorous tagged organic compound wherein the fluorous nature of the first fluorous tagged organic compound is increased relative to the organic compound to enable separation of the first fluorous tagged organic compound from at least one other compound by using a fluorous separation technique.
- 41. The method of claim 40, further comprising reducing the fluorine content of a second fluorous tagged organic compound, wherein the second fluorous tagged organic compound is produced from subsequent chemical transformations on the first fluorous tagged organic compound.
- 42. The method of claim 41, wherein the fluorine content of the second fluorous tagged organic compound is reduced by removing at least one grouping of atoms having a structure selected from the group consisting of: —C6H5-m—[Wp(CH2)nRf]m, —[Wp(CH2)nRf]m, —(CH2)nRf, and Rf from the second fluorous tagged organic compound.
- 43. The method of claim 40 wherein Rf is a fluorous group selected from the group consisting of a perfluorocarbon, a fluorohydrocarbon, a fluorinated ether and a fluorinated amine.
- 44. The method of claim 40 wherein X is —SO2NH2 and W is one of S, NR39, CR40R41, and SiR42R43.
- 45. The method of claim 40 wherein X is —SO2NHNH2.
- 46. The method of claim 40 wherein X is —CHO and p is 1.
- 47. The method of claim 40 wherein X is —SH.
- 48. The method of claim 40 wherein X is CH2)n′SH.
- 49. The method of claim 40 wherein X is —C(═NRB)C6H4Y, wherein Y is one of an electron withdrawing group, a hydrogen and an alkyl group, and RB is one of hydrogen, alkyl, aryl and hydroxyl.
- 50. The method of claim 49 wherein Y is an electron withdrawing group selected from the group consisting of —NO2, —CN, —F and —Cl.
- 51. The method of claim 40 wherein X is —C(═O)CH2C(═O)R44.
- 52. The method of claim 40 wherein X is —COCl.
- 53. The method of claim 40 wherein X is —SO2Cl.
- 54. The method of claim 40 wherein X is —OH.
- 55. The method of claim 40 wherein X is —NCZ, wherein Z is one of O and S.
- 56. The method of claim 40 wherein X is —SO3H.
- 57. A method for increasing the fluorous nature of an organic compound, comprising:
reacting the organic compound with at least one second compound having the formula: X—(CH2)nRf to create a first fluorous tagged organic compound, wherein Rf is a fluorous group, n is an integer from 0 to 5, and X is a grouping of atoms selected from the group consisting of —C(CH3)2COCl, —CR45R46 SH, —CR45R46SR47, —SO2Cl, —OC(═O)NHNH2, —NHC(═NH)NH2, —SO2NH2, —SO2NHNH2, —NCZ, -maleimide, -α-succinic anhydride, and —COCH2COR48, wherein Z is one of O and S, and R45, R46, R47, and R48 are independently, the same or different, selected from the group consisting of hydrogen, linear alkyl, branched alkyl, benzyl, and —(CH2)nRf, the organic compound having at least one functional group reactive with group X on the second compound forming at least one chemical bond between the organic compound and the second compound resulting in the first fluorous tagged organic compound wherein the fluorous nature of the first fluorous tagged organic compound is increased relative to the organic compound to enable separation of the first fluorous tagged organic compound from at least one other compound by using a fluorous separation technique.
- 58. The method of claim 57, further comprising reducing the fluorine content of a second fluorous tagged organic compound, wherein the second fluorous tagged organic compound is produced from subsequent chemical transformations on the first fluorous tagged organic compound.
- 59. The method of claim 58, wherein the fluorine content of the second fluorous tagged organic compound is reduced by removing at least one grouping of atoms having a structure selected from the group consisting of: X′(CH2)nRf, —(CH2)nRf, and Rf from the second fluorous tagged organic compound, wherein X′ is one of COC(CH3)2—, SO2— and NH2NHCO2—.
- 60. The method of claim 57 wherein Rf is a fluorous group selected from the group consisting of a perfluorocarbon, a fluorohydrocarbon, a fluorinated ether and a fluorinated amine.
- 61. The method of claim 57 wherein X is —C(CH3)2COCl.
- 62. The method of claim 57 wherein X is —CR45R46SH.
- 63. The method of claim 57 wherein X is —CR45R46SR47.
- 64. The method of claim 57 wherein X is —SO2Cl.
- 65. The method of claim 57 wherein X is —OC(═O)NHNH2.
- 66. The method of claim 57 wherein X is —NHC(═NH)NH2.
- 67. The method of claim 57 wherein X is —SO2NH2.
- 68. The method of claim 57 wherein X is —SO2NHNH2.
- 69. The method of claim 57 wherein X is —NCZ, wherein Z is one of O and S.
- 70. The method of claim 57 wherein X is -maleimide.
- 71. The method of claim 57 wherein X is -α-succinic anhydride.
- 72. The method of claim 57 wherein X is —COCH2COR48.
- 73. A compound for increasing the fluorous nature of an organic compound, said compound having the formula:
- 74. The compound of claim 73 wherein X is a leaving group selected from the group consisting of a halide, a methane sulfonate, a p-toluenesulfonate, a trifluoromethanesulfonate and R18SO3—, wherein R18 is one of linear alkyl, branched alkyl, aryl, benzyl, and —(CH2)n″″Rf, wherein n″″ in an integer from 0 to 5.
- 75. The compound of claim 73 wherein X is a nucleophilic group selected from the group consisting of —OH, —OR19, —NH2, —NHR19, —NR19R20, —NHC(═NH)NH2, —SH, —SR19, —NH(CH2)n″″NH2, and —NH(CH2)n″″N((CH2)n″″NH2)2, wherein n is an integer from 1 to 5, and R19 and R20 are independently, the same or different, one of a linear alkyl, a branched alkyl, an aryl and a benzyl group.
- 76. The compound of claim 73 wherein X is the electrophilic group comprising —NCZ, wherein Z is one of oxygen and sulfur.
- 77. The compound of claim 73 wherein Rf is a fluorous group selected from the group consisting of a perfluorocarbon, a fluorohydrocarbon, a fluorinated ether and a fluorinated amine.
- 78. The compound of claim 73 wherein X is a leaving group and R1 and R2 are each hydrogen.
- 79. The compound of claim 73 wherein X is a leaving group and R1 and R2 are independently, the same or different, one of C6H5-m′[Wp′(CH2)n′Rf]m′ and C6H5-m″[Wp″(CH2)n″Rf]m ″.
- 80. The compound of claim 73 wherein X is —SH.
- 81. The compound of claim 73 wherein X is one of NR21R22 and NR21R22R23+Y31, wherein R21, R22 and R23 are independently, the same or different, one of a hydrogen, a linear alkyl, a branched alkyl and a benzyl group and Y is a counter anion selected from the group consisting of Cl−, Br−, I− and CO32−.
- 82. The compound of claim 73 wherein X is —OH, R1 is hydrogen and R2 is C6H5-q(W′)q.
- 83. The compound of claim 73 wherein X is —NH2, R1 is hydrogen and R2 is C6H5-q(W′)q.
- 84. The compound of claim 73 wherein X is —NH(CH2)n′″NH2.
- 85. The compound of claim 73 wherein X is —NH(CH2)n″″N((CH2)n″″NH2)2.
- 86. The compound of claim 73 wherein X is —NHC(═N)NH2.
- 87. The compound of claim 73 wherein X is —SH and R1 and R2 are each hydrogen.
- 88. The compound of claim 73 wherein X is SR24, wherein R24 is one of a linear alkyl, a branched alkyl, an aryl, and a benzyl group.
- 89. The compound of claim 73 wherein X is —NCZ, wherein Z is one of O and S and R1 and R2 are each hydrogen.
- 90. A compound for increasing the fluorous nature of an organic compound, the compound having the formula:
- 91. The compound of claim 90 wherein X is a leaving group selected from the group consisting of a halide, —N3, —CN, —OR30, —ONH2, —ONHR30, —ONR302, —O2CR30, —O2COR30, —O2CNR302, —SR30, —OC(S)R30, R30CS2—, —SC(O)SR30, —SCS2R30, —OC(O)SR30, —OC(S)OR30, —SC(S)OR30, R30SO2—, R30SO3—, R30OSO2—, R30OSO3—, R30PO3—, R30PO3—, an N-imidazolyl group, an N-triazolyl group, an N-benzotriazolyl group, a benzotriazolyloxy group, an imidazolyloxy group, an N-imidazolinone group, an N-imidazolone group, an N-imidazolinethione group, an N-succinimidyl group, an N-phthalimidyl group, an N-succinimidyloxy group, an N-phthalimidyloxy group, —ON═C(CN)R30, and a 2-pyridyloxy group, wherein R30 is one of linear alkyl, branched alkyl, aryl, benzyl, and —(CH2)n″Rf, wherein n″ in an integer from 0 to 5.
- 92. The compound of claim 90 wherein Rf and Rf′ are independently, the same or different, a fluorous group selected from the group consisting of a perfluorocarbon, a fluorohydrocarbon, a fluorinated ether and a fluorinated amine.
- 93. The compound of claim 90 wherein Rd is —CH═CH—(CH2)nRf.
- 94. The compound of claim 90 wherein Rd is
- 95. The compound of claim 90 wherein Rd is —C6H5-m″[Wp(CH2)nRf]m″.
- 96. A fluorous nitrogen containing compound having the formula:
- 97. The compound of claim 96 wherein Rf is a fluorous group selected from the group consisting of a perfluorocarbon, a fluorohydrocarbon, a fluorinated ether and a fluorinated amine.
- 98. The compound of claim 96 wherein the fluorous nitrogen containing compound is a cyclic amine.
- 99. The compound of claim 96 wherein R31R32 is —(CH2)mW(CH2)m′—.
- 100. The compound of claim 96 wherein R31R32 is
- 101. The compound of claim 96 wherein R31R32 is
- 102. The compound of claim 96 wherein R31 is one of linear alkyl and branched alkyl, and R32 is pyridyl.
- 103. The compound of claim 96 wherein R31 is hydrogen and R32 is —(CH2)n″NH2.
- 104. The compound of claim 96 wherein R31 is hydrogen and R32 is —(CH2)n″N[(CH2)n″NH2]2.
- 105. The compound of claim 96 wherein R31 is —(CH2)n′″OH, and R32 is —(CH2)n″″OH.
- 106. A compound for increasing the fluorous nature of an organic compound, the compound having the formula:
- 107. The compound of claim 106 wherein Rf is a fluorous group selected from the group consisting of a perfluorocarbon, a fluorohydrocarbon, a fluorinated ether and a fluorinated amine.
- 108. The compound of claim 106 wherein X is —SO2NH2 and W is one of S, NR39, CR40R41, and SiR42R43.
- 109. The compound of claim 106 wherein X is —SO2NHNH2.
- 110. The compound of claim 106 wherein X is —CHO and p is 1.
- 111. The compound of claim 106 wherein X is —SH.
- 112. The compound of claim 106 wherein X is —(CH2)n′SH.
- 113. The compound of claim 106 wherein X is —C(═NRB)C6H4Y, wherein Y is one of an electron withdrawing group, a hydrogen and an alkyl group, and RB is one of hydrogen, alkyl, aryl and hydroxyl.
- 114. The compound of claim 113 wherein Y is an electron withdrawing group selected from the group consisting of —NO2, —CN, —F and —Cl.
- 115. The compound of claim 106 wherein X is —C(═O)CH2C(═O)R44.
- 116. A compound for increasing the fluorous nature of an organic compound, the compound having the formula:
- 117. The compound of claim 116 wherein Rf is a fluorous group selected from the group consisting of a perfluorocarbon, a fluorohydrocarbon, a fluorinated ether and a fluorinated amine.
- 118. A compound for increasing the fluorous nature of an organic compound, the compound having the structure selected from the group consisting of:
- 119. The compound of claim 118 wherein X is a leaving group selected from the group consisting of a halide, —N3, —CN, —OR54, —ONH2, —ONHR54, —ONR542, —O2CR54, —O2COR54, —O2CNR542, —SR54, —OC(S)R54, R54CS2—, —SC(O)SR54, —SCS2R54, —OC(O)SR54, —OC(S)OR54, —SC(S)OR54, R54SO2—, R54SO3—, R54OSO2—, R54OSO3—, R54PO3—, R54OPO3—, an N-imidazolyl group, an N-triazolyl group, an N-benzotriazolyl group, a benzotriazolyloxy group, an imidazolyloxy group, an N-imidazolinone group, an N-imidazolone group, an N-imidazolinethione group, an N-succinimidyl group, an N-phthalimidyl group, an N-succinimidyloxy group, an N-phthalimidyloxy group, —ON═C(CN)R54, and a 2-pyridyloxy group, wherein R54 is one of linear alkyl, branched alkyl, aryl, benzyl, and —(CH2)n″Rf, wherein n″″ in an integer from 0 to 5.
- 120. The compound of claim 118 wherein X′ is a leaving group selected from the group consisting of a halide, a methane sulfonate, a p-toluenesulfonate, a trifluoromethanesulfonate and R18SO3—, wherein R18 is one of linear alkyl, branched alkyl, aryl, benzyl, and —(CH2)n″″Rf, wherein n″″ in an integer from 0 to 5.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority to U.S. Provisional Patent Application Serial No. 60/395,067, entitled “New Fluorous Tagging (Scavenging) Reactants and Methods of Synthesis and Use Thereof”, filed Jul. 11, 2002; U.S. Provisional Patent Application Serial No. 60/396,952, entitled “New Fluorous Tagging Reagents and Methods of Synthesis and Use Thereof”, filed Jul. 18, 2002; U.S. Provisional Patent Application Serial No. 60/442,712, entitled “Fluorous Synthesis of Disubstituted Pyrimidines”, filed Jan. 27, 2003; U.S. Provisional Patent Application Serial No. 60/442,762, entitled “FluoMar™, A Fluorous Version of the Marshall Resin for Solution-phase Library Synthesis”, filed Jan. 27, 2003; and U.S. Provisional Patent Application Serial No. 60/442,840, entitled “Fluorous Electrophilic Scavengers for Solution Phase Parallel Synthesis”, filed Jan. 27, 2003, which are incorporated by reference herein in their entirety.
GOVERNMENTAL INTEREST
[0002] This invention was made with Government support under grants 1 R44 GM67326-01 and 1 R43 GM066415-01 awarded by the National Institutes of Health. The Government may have certain rights in the invention.
Provisional Applications (5)
|
Number |
Date |
Country |
|
60395067 |
Jul 2002 |
US |
|
60396952 |
Jul 2002 |
US |
|
60442712 |
Jan 2003 |
US |
|
60442762 |
Jan 2003 |
US |
|
60442840 |
Jan 2003 |
US |