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[5] Allylstannanes have also seen use in this context: (a) Curran, D. P.; van Elburg, P. A. Tetrahedron Lett. 1989, 30, 2501. (b) Keck, G. E.; Cressman, E. N. K.; Enholm, E. J. J. Org. Chem. 1989, 54, 4345.
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Curran, D.P.1
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9
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[5] Allylstannanes have also seen use in this context: (a) Curran, D. P.; van Elburg, P. A. Tetrahedron Lett. 1989, 30, 2501. (b) Keck, G. E.; Cressman, E. N. K.; Enholm, E. J. J. Org. Chem. 1989, 54, 4345.
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Cressman, E.N.K.2
Enholm, E.J.3
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Abramovitch, R. A., Ed.; Plenum Press: New York Chapter 3
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[6] For reviews of free radical based methods of carbon-carbon bond formation, see: (a) Surzur, J.-M. In Reactive Intermediates; Abramovitch, R. A., Ed.; Plenum Press: New York, 1982; Vol. 2, Chapter 3. (b) Giese, B. Radicals in Organic Synthesis; Formation of Carbon-Carbon Bonds, Pergamon Press: Oxford, 1986. (c) Ramaiah, M. Tetrahedron 1987, 43, 3541. (d) Curran, D. P. Synthesis 1988, 417 and 489. (e) Jasperse, C. P.; Curran, D. P.; Fevig, T. L. Chem. Rev. 1991, 91, 1237.
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Reactive Intermediates
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Surzur, J.-M.1
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Formation of Carbon-Carbon Bonds, Pergamon Press: Oxford
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[6] For reviews of free radical based methods of carbon-carbon bond formation, see: (a) Surzur, J.-M. In Reactive Intermediates; Abramovitch, R. A., Ed.; Plenum Press: New York, 1982; Vol. 2, Chapter 3. (b) Giese, B. Radicals in Organic Synthesis; Formation of Carbon-Carbon Bonds, Pergamon Press: Oxford, 1986. (c) Ramaiah, M. Tetrahedron 1987, 43, 3541. (d) Curran, D. P. Synthesis 1988, 417 and 489. (e) Jasperse, C. P.; Curran, D. P.; Fevig, T. L. Chem. Rev. 1991, 91, 1237.
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Radicals in Organic Synthesis
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Giese, B.1
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[6] For reviews of free radical based methods of carbon-carbon bond formation, see: (a) Surzur, J.-M. In Reactive Intermediates; Abramovitch, R. A., Ed.; Plenum Press: New York, 1982; Vol. 2, Chapter 3. (b) Giese, B. Radicals in Organic Synthesis; Formation of Carbon-Carbon Bonds, Pergamon Press: Oxford, 1986. (c) Ramaiah, M. Tetrahedron 1987, 43, 3541. (d) Curran, D. P. Synthesis 1988, 417 and 489. (e) Jasperse, C. P.; Curran, D. P.; Fevig, T. L. Chem. Rev. 1991, 91, 1237.
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Tetrahedron
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Ramaiah, M.1
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85082777144
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and 489
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[6] For reviews of free radical based methods of carbon-carbon bond formation, see: (a) Surzur, J.-M. In Reactive Intermediates; Abramovitch, R. A., Ed.; Plenum Press: New York, 1982; Vol. 2, Chapter 3. (b) Giese, B. Radicals in Organic Synthesis; Formation of Carbon-Carbon Bonds, Pergamon Press: Oxford, 1986. (c) Ramaiah, M. Tetrahedron 1987, 43, 3541. (d) Curran, D. P. Synthesis 1988, 417 and 489. (e) Jasperse, C. P.; Curran, D. P.; Fevig, T. L. Chem. Rev. 1991, 91, 1237.
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Synthesis
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Curran, D.P.1
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14
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[6] For reviews of free radical based methods of carbon-carbon bond formation, see: (a) Surzur, J.-M. In Reactive Intermediates; Abramovitch, R. A., Ed.; Plenum Press: New York, 1982; Vol. 2, Chapter 3. (b) Giese, B. Radicals in Organic Synthesis; Formation of Carbon-Carbon Bonds, Pergamon Press: Oxford, 1986. (c) Ramaiah, M. Tetrahedron 1987, 43, 3541. (d) Curran, D. P. Synthesis 1988, 417 and 489. (e) Jasperse, C. P.; Curran, D. P.; Fevig, T. L. Chem. Rev. 1991, 91, 1237.
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Curran, D.P.2
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33847085176
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[13] Clive, D. L. J.; Chittattu, G. J.; Farina, V.; Kiel, W. A.; Menchen, S. M.; Russell, C. G.; Singh, A.; Wong, C. K.; Curtis, N. J. J. Am. Chem. Soc. 1980, 102, 4438.
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Clive, D.L.J.1
Chittattu, G.J.2
Farina, V.3
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Singh, A.7
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Curtis, N.J.9
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25
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We thank Dr. Eugene Hickey for these calculations
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[16] We thank Dr. Eugene Hickey for these calculations.
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26
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0013482346
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13C NMR, and MS spectral/combustion data in satisfactory agreement with the assigned structures
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13C NMR, and MS spectral/combustion data in satisfactory agreement with the assigned structures.
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