Claims
- 1. A method for converting an aryl silane to a corresponding cis-diol, comprising:
providing an aryl silane substrate, wherein said aryl silane has at least one aromatic component and at least one silicon atom; and contacting a dioxygenase enzyme with said aryl silane substrate such that said aryl silane substrate is converted to a corresponding cis-diol.
- 2. The method as claimed in claim 1 wherein said dioxygenase enzyme is present in whole cells.
- 3. The method as claimed in claim 1 wherein said dioxygenase enzyme is cell-free.
- 4. The method as claimed in claim 1 wherein said dioxygenase enzyme comprises a synthetic form.
- 5. The method as claimed in claim 1 wherein said dioxygenase enzyme comprises toluene dioxygenase.
- 6. The method as claimed in claim 1 wherein said dioxygenase enzyme is expressed by an E. coli host cell expressing a JM109(pDTG601) plasmid.
- 7. The method as claimed in claim 1 wherein said dioxygenase enzyme comprises naphthalene dioxygenase.
- 8. The method as claimed in claim 1 wherein said dioxygenase enzyme comprises biphenyl dioxygenase.
- 9. The method as claimed in claim 1 wherein said dioxygenase enzyme is contacted with said aryl silane substrate in a liquid medium.
- 10. The method as claimed in claim 1 wherein said method further comprises providing a plurality of aryl silane substrates.
- 11. The method as claimed in claim 10 wherein said plurality of aryl silane substrates comprise the same aryl silane.
- 12. The method as claimed in claim 10 wherein said plurality of aryl silane substrates comprise different aryl silanes.
- 13. The method as claimed in claim 1 further comprising reacting said cis-diol with 2,2dimethoxypropane to convert said cis-diol to an acetonide derivative.
- 14. The method as claimed in claim 13 further comprising maintaining said acetonide derivative at room temperature for a sufficient time such that a cycloadduct forms from said acetonide derivative.
- 15. The method as claimed in claim 1 further comprising contacting a diol dehydrogenase enzyme with said cis-diol to convert said cis-diol to a corresponding catechol.
- 16. The method as claimed in claim 15 wherein said dioxygenase enzyme and said diol dehydrogenase enzyme are present in whole cells.
- 17. The method as claimed in claim 15 wherein said dioxygenase enzyme and said diol dehydrogenase enzyme are present in a single strain of cells.
- 18. The method as claimed in claim 1 wherein said aryl silane substrate has the formula:
- 19. The method as claimed in claim 18 wherein:
R1, R2, and R3 are each independently selected from hydrogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, halomethyl, or OR; and R is hydrogen, methyl, or ethyl.
- 20. The method as claimed in claim 18 wherein R1, R2, and R3 are each independently selected from hydrogen, methyl, chloromethyl, or vinyl.
- 21. The method as claimed in claim 18 wherein said cis-diol comprises:
- 22. The method as claimed in claim 18 wherein said cis-diol comprises
- 23. The method as claimed in claim 18 wherein said cis-diol comprises
- 24. The method as claimed in claim 18 wherein said cis-diol comprises
- 25. The method as claimed in claim 18 further comprising reacting said cis-diol with 2,2-dimethoxypropane to convert said cis-diol to an acetonide derivative having the formula:
- 26. The method as claimed in claim 25 wherein said acetonide comprises:
- 27. The method as claimed in claim 25 wherein said acetonide comprises
- 28. The method as claimed in claim 25 wherein said acetonide comprises:
- 29. The method as claimed in claim 25 wherein said acetonide comprises:
- 30. The method as claimed in claim 18 further comprising contacting a diol dehydrogenase enzyme with said cis-diol to convert said cis-diol to a corresponding catechol having the formula:
- 31. The method as claimed in claim 30 wherein said catechol comprises:
- 32. The method as claimed in claim 30 wherein said catechol comprises:
- 33. The method as claimed in claim 1 wherein said aryl silane substrate has the formula:
- 34. The method as claimed in claim 33 wherein:
R1, R2, and R3 are each independently selected from hydrogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, halomethyl, or OR; R4 is selected from hydrogen, halogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, CN, NO2, OR or SiR1R2R3; R is hydrogen, methyl, or ethyl; and X is either a divalent linear or branched C1-C5 alkyl, C2-C5 alkenyl, or C2-C5 alkynyl spacer.
- 35. The method as claimed in claim 33 wherein:
R1, R2, and R3 are each independently selected from hydrogen, methyl, chloromethyl, or vinyl; R4 is selected from hydrogen, halogen, a linear or branched C1-C3 alkyl, a linear or branched C2-C3 alkenyl, a linear or branched C2-C3 alkynyl, CN, NO2, OR or SiR1R2R3.
- 36. The method as claimed in claim 33 further comprising reacting said cis-diol with 2,2-dimethoxypropane to convert said cis-diol to an acetonide derivative having the formula:
- 37. The method as claimed in claim 33 further comprising contacting a diol dehydrogenase enzyme with said cis-diol to convert said cis-diol to a corresponding catechol having the formula:
- 38. The method as claimed in claim 1 wherein said aryl silane substrate has the formula:
- 39. The method as claimed in claim 38 wherein:
R1, R2, and R3 are each independently selected from hydrogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, halomethyl, or OR; R4 is selected from hydrogen, halogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, CN, NO2, OR or SiR1R2R3; and R is hydrogen, methyl, or ethyl.
- 40. The method as claimed in claim 38 wherein:
R1, R2, and R3 are each independently selected from hydrogen, methyl, chloromethyl, or vinyl; and R4 is selected from hydrogen, halogen, a linear or branched C1-C3 alkyl, a linear or branched C2-C3 alkenyl, a linear or branched C2-C3 alkynyl, CN, NO2, OR or SiR1R2R3.
- 41. The method as claimed in claim 38 further comprising reacting said cis-diol with 2,2-dimethoxypropane to convert said cis-diol to an acetonide derivative having the formula:
- 42. The method as claimed in claim 38 further comprising contacting a diol dehydrogenase enzyme with said cis-diol to convert said cis-diol to a corresponding catechol having the formula:
- 43. The method as claimed in claim 1 wherein said aryl silane substrate has the formula:
- 44. The method as claimed in claim 43 wherein:
R1, R2, and R3 are each independently selected from hydrogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, halomethyl, or OR; R4 is selected from hydrogen, halogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, CN, NO2, OR or SiR1R2R3; and R is hydrogen, methyl, or ethyl.
- 45. The method as claimed in claim 43 wherein:
R1, R2, and R3 are each independently selected from hydrogen, methyl, chloromethyl, or vinyl; and R4 is selected from hydrogen, halogen, a linear or branched C1-C3 alkyl, a linear or branched C2-C3 alkenyl, a linear or branched C2-C3 alkynyl, CN, NO2, OR or SiR1R2R3.
- 46. The method as claimed in claim 43 further comprising reacting said cis-diol with 2,2-dimethoxypropane to convert such that said cis-diol to an acetonide derivative having the formula:
- 47. The method as claimed in claim 43 further comprising contacting a diol dehydrogenase enzyme with said cis-diol to convert said cis-diol to a corresponding catechol having the formula:
- 48. The method as claimed in claim 1 wherein said aryl silane substrate has the formula:
- 49. The method as claimed in claim 48 wherein:
R1, R2, and R3 are each independently selected from hydrogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, halomethyl, or OR; R4 is selected from hydrogen, halogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, CN, NO2, OR or SiR1R2R3; R is hydrogen, methyl, or ethyl; and X is either a divalent linear or branched C1-C5 alkyl, C2-C5 alkenyl, or C2-C5 alkynyl spacer.
- 50. The method as claimed in claim 48 wherein:
R1, R2, and R3 are each independently selected from hydrogen, methyl, chloromethyl, or vinyl; and R4 is selected from hydrogen, halogen, a linear or branched C1-C3 alkyl, a linear or branched C2-C3 alkenyl, a linear or branched C2-C3 alkynyl, CN, NO2, OR or SiR1R2R3.
- 51. The method as claimed in claim 48 further comprising reacting said cis-diol with 2,2-dimethoxypropane to convert said cis-diol to an acetonide derivative having the formula:
- 52. The method as claimed in claim 48 further comprising contacting a diol dehydrogenase enzyme with said cis-diol to convert said cis-diol to a corresponding catechol having the formula:
- 53. A compound comprising a cis-diol having the formula:
- 54. The compound as claimed in claim 53 wherein:
R1, R2, and R3 are each independently selected from hydrogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, halomethyl, or OR; and R is hydrogen, methyl, or ethyl.
- 55. The compound as claimed in claim 53 wherein R1, R2, and R3 are each independently selected from hydrogen, methyl, chloromethyl, or vinyl.
- 56. The compound as claimed in claim 53 wherein said cis-diol comprises:
- 57. The compound as claimed in claim 53 wherein said cis-diol comprises
- 58. The compound as claimed in claim 53 wherein said cis-diol comprises
- 59. The compound as claimed in claim 53 wherein said cis-diol comprises
- 60. The compound as claimed in claim 53 wherein said cis-diol comprises
- 61. The compound as claimed in claim 53 wherein said cis-diol comprises
- 62. A compound comprising a cis-diol having the formula:
- 63. The compound as claimed in claim 62 wherein:
R1, R2, and R3 are each independently selected from hydrogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, halomethyl, or OR; R4 is selected from hydrogen, halogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, CN, NO2, OR or SiR1R2R3; R is hydrogen, methyl, or ethyl; and X is either a divalent linear or branched C1-C5 alkyl, C2-C5 alkenyl, or C2-C5 alkynyl spacer.
- 64. The compound as claimed in claim 62 wherein:
R1, R2, and R3 are each independently selected from hydrogen, methyl, chloromethyl, or vinyl; R4 is selected from hydrogen, halogen, a linear or branched C1-C3 alkyl, a linear or branched C2-C3 alkenyl, a linear or branched C2-C3 alkynyl, CN, NO2, OR or SiR1R2R3.
- 65. A compound comprising a silane cis-diol having the formula:
- 66. The compound as claimed in claim 65 wherein:
R1, R2, and R3 are each independently selected from hydrogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, halomethyl, or OR; R4 is selected from hydrogen, halogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, CN, NO2, OR or SiR1R2R3; and R is hydrogen, methyl, or ethyl.
- 67. The compound as claimed in claim 65 wherein:
R1, R2, and R3 are each independently selected from hydrogen, methyl, chloromethyl, or vinyl; and R4 is selected from hydrogen, halogen, a linear or branched C1-C3 alkyl, a linear or branched C2-C3 alkenyl, a linear or branched C2-C3 alkynyl, CN, NO2, OR or SiR1R2R3.
- 68. A compound comprising a silane cis-diol having the formula:
- 69. The compound as claimed in claim 68 wherein:
R1, R2, and R3 are each independently selected from hydrogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, halomethyl, or OR; R4 is selected from hydrogen, halogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, CN, NO2, OR or SiR1R2R3; and R is hydrogen, methyl, or ethyl.
- 70. The compound as claimed in claim 68 wherein:
R1, R2, and R3 are each independently selected from hydrogen, methyl, chloromethyl, or vinyl; and R4 is selected from hydrogen, halogen, a linear or branched C1-C3 alkyl, a linear or branched C2-C3 alkenyl, a linear or branched C2-C3 alkynyl, CN, NO2, OR or SiR1R2R3.
- 71. A compound comprising a silane cis-diol having the formula:
- 72. The compound as claimed in claim 71 wherein:
R1, R2, and R3 are each independently selected from hydrogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, halomethyl, or OR; R4 is selected from hydrogen, halogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, CN, NO2, OR or SiR1R2R3; R is hydrogen, methyl, or ethyl; and X is either a divalent linear or branched C1-C5 alkyl, C2-C5 alkenyl, or C2-C5 alkynyl spacer.
- 73. The compound as claimed in claim 71 wherein:
R1, R2, and R3 are each independently selected from hydrogen, methyl, chloromethyl, or vinyl; and R4 is selected from hydrogen, halogen, a linear or branched C1-C3 alkyl, a linear or branched C2-C3 alkenyl, a linear or branched C2-C3 alkynyl, CN, NO2, OR or SiR1R2R3.
- 74. A compound comprising an acetonide having the formula:
- 75. The compound as claimed in claim 74 wherein:
R1, R2, and R3 are each independently selected from hydrogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, halomethyl, or OR; and R is hydrogen, methyl, or ethyl.
- 76. The compound as claimed in claim 74 wherein R1, R2, and R3 are each independently selected from hydrogen, methyl, chloromethyl, or vinyl.
- 77. The compound as claimed in claim 74 wherein said acetonide comprises:
- 78. The compound as claimed in claim 74 wherein said acetonide comprises:
- 79. The compound as claimed in claim 74 wherein said acetonide comprises:
- 80. The compound as claimed in claim 74 wherein said acetonide comprises:
- 81. A compound comprising an acetonide having the formula:
- 82. The compound as claimed in claim 81 wherein:
R1, R2, and R3 are each independently selected from hydrogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, halomethyl, or OR; R4 is selected from hydrogen, halogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, CN, NO2, OR or SiR1R2R3; R is hydrogen, methyl, or ethyl; and X is either a divalent linear or branched C1-C5 alkyl, C2-C5 alkenyl, or C2-C5 alkynyl spacer.
- 83. The compound as claimed in claim 81 wherein:
R1, R2, and R3 are each independently selected from hydrogen, methyl, chloromethyl, or vinyl; R4 is selected from hydrogen, halogen, a linear or branched C1-C3 alkyl, a linear or branched C2-C3 alkenyl, a linear or branched C2-C3 alkynyl, CN, NO2, OR or SiR1R2R3.
- 84. A compound comprising an acetonide having the formula:
- 85. The compound as claimed in claim 84 wherein:
R1, R2, and R3 are each independently selected from hydrogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, halomethyl, or OR; R4 is selected from hydrogen, halogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, CN, NO2, OR or SiR1R2R3; and R is hydrogen, methyl, or ethyl.
- 86. The compound as claimed in claim 84 wherein:
R1, R2, and R3 are each independently selected from hydrogen, methyl, chloromethyl, or vinyl; and R4 is selected from hydrogen, halogen, a linear or branched C1-C3 alkyl, a linear or branched C2-C3 alkenyl, a linear or branched C2-C3 alkynyl, CN, NO2, OR or SiR1R2R3.
- 87. A compound comprising an acetonide having the formula:
- 88. The compound as claimed in claim 87 wherein:
R1, R2, and R3 are each independently selected from hydrogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, halomethyl, or OR; R4 is selected from hydrogen, halogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, CN, NO2, OR or SiR1R2R3; and R is hydrogen, methyl, or ethyl.
- 89. The compound as claimed in claim 87 wherein:
R1, R2, and R3 are each independently selected from hydrogen, methyl, chloromethyl, or vinyl; and R4 is selected from hydrogen, halogen, a linear or branched C1-C3 alkyl, a linear or branched C2-C3 alkenyl, a linear or branched C2-C3 alkynyl, CN, NO2, OR or SiR1R2R3.
- 90. A compound comprising an acetonide having the formula:
- 91. The compound as claimed in claim 90 wherein:
R1, R2, and R3 are each independently selected from hydrogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, halomethyl, or OR; R4 is selected from hydrogen, halogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, CN, NO2, OR or SiR1R2R3; R is hydrogen, methyl, or ethyl; and X is either a divalent linear or branched C1-C5 alkyl, C2-C5 alkenyl, or C2-C5 alkynyl spacer.
- 92. The compound as claimed in claim 90 wherein:
R1, R2, and R3 are each independently selected from hydrogen, methyl, chloromethyl, or vinyl; and R4 is selected from hydrogen, halogen, a linear or branched C1-C3 alkyl, a linear or branched C2-C3 alkenyl, a linear or branched C2-C3 alkynyl, CN, NO2, OR or SiR1R2R3.
- 93. A compound comprising a catechol having the formula:
- 94. The compound as claimed in claim 93 wherein:
R1, R2, and R3 are each independently selected from hydrogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, halomethyl, or OR; and R is hydrogen, methyl, or ethyl.
- 95. The compound as claimed in claim 93 wherein R1, R2, and R3 are each independently selected from hydrogen, methyl, chloromethyl, or vinyl.
- 96. The compound as claimed in claim 93 wherein said catechol comprises:
- 97. The compound as claimed in claim 93 wherein said catechol comprises:
- 98. A compound comprising a catechol having the formula:
- 99. The compound as claimed in claim 98 wherein:
R1, R2, and R3 are each independently selected from hydrogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, halomethyl, or OR; R4 is selected from hydrogen, halogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, CN, NO2, OR or SiR1R2R3; R is hydrogen, methyl, or ethyl; and X is either a divalent linear or branched C1-C5 alkyl, C2-C5 alkenyl, or C2-C5 alkynyl spacer.
- 100. The compound as claimed in claim 98 wherein:
R1, R2, and R3 are each independently selected from hydrogen, methyl, chloromethyl, or vinyl; R4 is selected from hydrogen, halogen, a linear or branched C1-C3 alkyl, a linear or branched C2-C3 alkenyl, a linear or branched C2-C3 alkynyl, CN, NO2, OR or SiR1R2R3.
- 101. A compound comprising a catechol having the formula:
- 102. The compound as claimed in claim 101 wherein:
R1, R2, and R3 are each independently selected from hydrogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, halomethyl, or OR; R4 is selected from hydrogen, halogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, CN, NO2, OR or SiR1R2R3; and R is hydrogen, methyl, or ethyl.
- 103. The compound as claimed in claim 101 wherein:
R1, R2, and R3 are each independently selected from hydrogen, methyl, chloromethyl, or vinyl; and R4 is selected from hydrogen, halogen, a linear or branched C1-C3 alkyl, a linear or branched C2-C3 alkenyl, a linear or branched C2-C3 alkynyl, CN, NO2, OR or SiR1R2R3.
- 104. A compound comprising a catechol having the formula:
- 105. The compound as claimed in claim 104 wherein:
R1, R2, and R3 are each independently selected from hydrogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, halomethyl, or OR; R4 is selected from hydrogen, halogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, CN, NO2, OR or SiR1R2R3; and R is hydrogen, methyl, or ethyl.
- 106. The compound as claimed in claim 104 wherein:
R1, R2, and R3 are each independently selected from hydrogen, methyl, chloromethyl, or vinyl; and R4 is selected from hydrogen, halogen, a linear or branched C1-C3 alkyl, a linear or branched C2-C3 alkenyl, a linear or branched C2-C3 alkynyl, CN, NO2, OR or SiR1R2R3.
- 107. A compound comprising a catechol having the formula:
- 108. The compound as claimed in claim 107 wherein:
R1, R2, and R3 are each independently selected from hydrogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, halomethyl, or OR; R4 is selected from hydrogen, halogen, a linear or branched C1-C5 alkyl, a linear or branched C2-C5 alkenyl, a linear or branched C2-C5 alkynyl, CN, NO2, OR or SiR1R2R3; R is hydrogen, methyl, or ethyl; and X is either a divalent linear or branched C1-C5 alkyl, C2-C5 alkenyl, or C2-C5 alkynyl spacer.
- 109. The compound as claimed in claim 107 wherein:
R1, R2, and R3 are each independently selected from hydrogen, methyl, chloromethyl, or vinyl; and R4 is selected from hydrogen, halogen, a linear or branched C1-C3 alkyl, a linear or branched C2-C3 alkenyl, a linear or branched C2-C3 alkynyl, CN, NO2, OR or SiR1R2R3.
- 110. A compound comprising:
- 111. The compound as claimed in claim 110 wherein said compound comprises:
- 112. A di-O-acyl comprising a compound having the formula:
- 113. The compound as claimed in claim 112 wherein said di-O-acyl comprises:
- 114. A silyl ether comprising a compound having the formula:
- 115. The compound as claimed in claim 114 wherein said compound comprises
- 116. A boronate ester comprising a compound having the formula:
- 117. The compound as claimed in claim 116 wherein said compound comprises
- 118. An epoxy comprising a compound having the formula:
- 119. The compound as claimed in claim 118 wherein said compound comprises
- 120. The compound as claimed in claim 118 wherein said compound comprises
- 121. An epoxy comprising a compound having the formula:
- 122. The compound as claimed in claim 121 wherein said compound comprises
- 123. The compound as claimed in claim 121 wherein said compound comprises
- 124. A partially or fully saturated compound comprising a compound having the formula:
- 125. The compound as claimed in claim 124 wherein said compound comprises
- 126. The compound as claimed in claim 124 wherein said compound comprises
- 127. The compound as claimed in claim 124 wherein said compound comprises
- 128. A partially or fully saturated compound comprising a compound having the formula:
- 129. The compound as claimed in claim 128 wherein said compound comprises
- 130. The compound as claimed in claim 128 wherein said compound comprises:
- 131. The compound as claimed in claim 128 wherein said compound comprises
- 132. A silanol comprising a compound having the formula:
- 133. The compound as claimed in claim 132 wherein said compound comprises
- 134. A silanol comprising a compound having the formula:
- 135. The compound as claimed in claim 134 wherein said compound comprises
- 136. An alkoxy compound comprising:
- 137. An alkoxy compound comprising:
- 138. The compound as claimed in claim 137 wherein said compound comprises
- 139. The compound as claimed in claim 137 wherein said compound comprises
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims priority to U.S. Provisional Application No. 60/385,373, filed Jun. 3, 2002 and to U.S. Provisional Application No. 60/435,187 filed Dec. 18, 2002.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60385373 |
Jun 2002 |
US |
|
60435187 |
Dec 2002 |
US |