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2
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84985150906
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For typical examples of our own, see: K. Yamamoto, O. Nunokawa, and J. Tsuji, Synthesis, 1977, 721; K. Yamamoto, J. Yoshitake, N. T. Qui, and J. Tsuji, Chem. Lett., 1978, 859; K. Yamamoto, M. Ohta, and J. Tsuji, Chem. Lett., 1979, 713.
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Yamamoto, K.1
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3
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2742520388
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-
For typical examples of our own, see: K. Yamamoto, O. Nunokawa, and J. Tsuji, Synthesis, 1977, 721; K. Yamamoto, J. Yoshitake, N. T. Qui, and J. Tsuji, Chem. Lett., 1978, 859; K. Yamamoto, M. Ohta, and J. Tsuji, Chem. Lett., 1979, 713.
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Yamamoto, K.1
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4
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0012875258
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For typical examples of our own, see: K. Yamamoto, O. Nunokawa, and J. Tsuji, Synthesis, 1977, 721; K. Yamamoto, J. Yoshitake, N. T. Qui, and J. Tsuji, Chem. Lett., 1978, 859; K. Yamamoto, M. Ohta, and J. Tsuji, Chem. Lett., 1979, 713.
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Yamamoto, K.1
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L. N. Lewis, K. G. Sy, G. L. Brayant, and P. E. Donahue, Organometallics, 10, 3750 (1991). Cf. K. Tamao, J. Yoshida, H. Yamamoto, T. Kakui, H. Matsumoto, M. Takahashi, A. Kurita, M. Murata, and M. Kumada, Organometallics, 1, 855 (1982).
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Lewis, L.N.1
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6
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2742530288
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L. N. Lewis, K. G. Sy, G. L. Brayant, and P. E. Donahue, Organometallics, 10, 3750 (1991). Cf. K. Tamao, J. Yoshida, H. Yamamoto, T. Kakui, H. Matsumoto, M. Takahashi, A. Kurita, M. Murata, and M. Kumada, Organometallics, 1, 855 (1982).
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Organometallics
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Tamao, K.1
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R. Takeuchi, S. Nitta, and D. Watanabe, J. Org. Chem., 60, 3045 (1995).
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34249040705
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Y. Seki, K. Takashita, K. Kawamoto, S. Murai, and N. Sonoda, Angew. Chem., Int. Ed. Engl. 19, 928 (1980); Y. Seki, K. Takeshita, K. Kawamoto, S. Murai, and N. Sonoda, J. Org. Chem., 51, 3890 (1986).
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Angew. Chem., Int. Ed. Engl.
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Seki, Y.1
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9
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33845374001
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Y. Seki, K. Takashita, K. Kawamoto, S. Murai, and N. Sonoda, Angew. Chem., Int. Ed. Engl. 19, 928 (1980); Y. Seki, K. Takeshita, K. Kawamoto, S. Murai, and N. Sonoda, J. Org. Chem., 51, 3890 (1986).
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J. Org. Chem.
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Seki, Y.1
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10
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F. Kakiuchi, Y. Tanaka, N. Chatani, and S. Murai, J. Organomet. Chem., 456, 45 (1993).
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Kakiuchi, F.1
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11
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37049108222
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K. Takeshita, Y. Seki, K. Kawamoto, S. Murai, and N. Sonoda, J. Chem. Soc., Chem. Commun., 1983, 1193; K. Takeshita, Y. Saki, K. Kawamoto, S. Murai, and N. Sonoda. J. Org. Chem., 52, 4864 (1987).
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J. Chem. Soc., Chem. Commun.
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Takeshita, K.1
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12
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0001439951
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K. Takeshita, Y. Seki, K. Kawamoto, S. Murai, and N. Sonoda, J. Chem. Soc., Chem. Commun., 1983, 1193; K. Takeshita, Y. Saki, K. Kawamoto, S. Murai, and N. Sonoda. J. Org. Chem., 52, 4864 (1987).
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J. Org. Chem.
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Takeshita, K.1
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13
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0000139787
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and references cited therein
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F. Kakiuchi, K. Nogami, N. Chatani, Y. Seki, and S. Murai, Organometallics, 12, 4748 (1993), and references cited therein.
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Organometallics
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Kakiuchi, F.1
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14
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0000806201
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ed by G. L. Larson, JAI Press, London
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For a review, see: J. Y. Corey, in "Advances in Silicon Chemistry," ed by G. L. Larson, JAI Press, London (1991), Vol. 1, pp. 327-387.
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Advances in Silicon Chemistry
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Corey, J.Y.1
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37049096761
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In general, excess alkene substrate is known to favor the formation of, if not selective, dehydrogenative silylation: A. Millan, E. Towns, and P. M. Maitlis, J. Chem. Soc., Chem. Commun., 1981, 673; A. Millan, M.-J. Fernandez, P. Bentz, and P. M. Maitlis, J. Mol. Catal., 26, 88 (1984); See also Ref. 4.
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J. Chem. Soc., Chem. Commun.
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Millan, A.1
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16
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2742580678
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-
See also Ref. 4
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In general, excess alkene substrate is known to favor the formation of, if not selective, dehydrogenative silylation: A. Millan, E. Towns, and P. M. Maitlis, J. Chem. Soc., Chem. Commun., 1981, 673; A. Millan, M.-J. Fernandez, P. Bentz, and P. M. Maitlis, J. Mol. Catal., 26, 88 (1984); See also Ref. 4.
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Millan, A.1
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17
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5244375756
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-
For an Fe complex, see: C. L. Randolph and M. S. Wrighton, J. Am. Chem. Soc., 108, 3366 (1986); For a Ru complex: Y. Seki, K. Takeshita, and K. Kawamoto, J. Organomet. Chem., 369, 117 (1989); Y. Wakatsuki, H. Yamazaki, M. Nakano, and Y. Yamamoto, J. Chem. Soc., Chem. Commun., 1991, 703: B. Marciniec and C. Pietraszuk, J. Chem. Soc., Chem. Commun., 1995, 2003; For a Rh complex: S. B. Dukett and R. N. Perutz, Organometallics, 11, 90 (1992).
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J. Am. Chem. Soc.
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Randolph, C.L.1
Wrighton, M.S.2
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18
-
-
0001442962
-
-
For an Fe complex, see: C. L. Randolph and M. S. Wrighton, J. Am. Chem. Soc., 108, 3366 (1986); For a Ru complex: Y. Seki, K. Takeshita, and K. Kawamoto, J. Organomet. Chem., 369, 117 (1989); Y. Wakatsuki, H. Yamazaki, M. Nakano, and Y. Yamamoto, J. Chem. Soc., Chem. Commun., 1991, 703: B. Marciniec and C. Pietraszuk, J. Chem. Soc., Chem. Commun., 1995, 2003; For a Rh complex: S. B. Dukett and R. N. Perutz, Organometallics, 11, 90 (1992).
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Seki, Y.1
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19
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37049083890
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-
For an Fe complex, see: C. L. Randolph and M. S. Wrighton, J. Am. Chem. Soc., 108, 3366 (1986); For a Ru complex: Y. Seki, K. Takeshita, and K. Kawamoto, J. Organomet. Chem., 369, 117 (1989); Y. Wakatsuki, H. Yamazaki, M. Nakano, and Y. Yamamoto, J. Chem. Soc., Chem. Commun., 1991, 703: B. Marciniec and C. Pietraszuk, J. Chem. Soc., Chem. Commun., 1995, 2003; For a Rh complex: S. B. Dukett and R. N. Perutz, Organometallics, 11, 90 (1992).
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J. Chem. Soc., Chem. Commun.
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Wakatsuki, Y.1
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Yamamoto, Y.4
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20
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37049090258
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-
For an Fe complex, see: C. L. Randolph and M. S. Wrighton, J. Am. Chem. Soc., 108, 3366 (1986); For a Ru complex: Y. Seki, K. Takeshita, and K. Kawamoto, J. Organomet. Chem., 369, 117 (1989); Y. Wakatsuki, H. Yamazaki, M. Nakano, and Y. Yamamoto, J. Chem. Soc., Chem. Commun., 1991, 703: B. Marciniec and C. Pietraszuk, J. Chem. Soc., Chem. Commun., 1995, 2003; For a Rh complex: S. B. Dukett and R. N. Perutz, Organometallics, 11, 90 (1992).
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J. Chem. Soc., Chem. Commun.
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Marciniec, B.1
Pietraszuk, C.2
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21
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0002814688
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For an Fe complex, see: C. L. Randolph and M. S. Wrighton, J. Am. Chem. Soc., 108, 3366 (1986); For a Ru complex: Y. Seki, K. Takeshita, and K. Kawamoto, J. Organomet. Chem., 369, 117 (1989); Y. Wakatsuki, H. Yamazaki, M. Nakano, and Y. Yamamoto, J. Chem. Soc., Chem. Commun., 1991, 703: B. Marciniec and C. Pietraszuk, J. Chem. Soc., Chem. Commun., 1995, 2003; For a Rh complex: S. B. Dukett and R. N. Perutz, Organometallics, 11, 90 (1992).
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(1992)
Organometallics
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Dukett, S.B.1
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85033830680
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ed by S. Patai and Z. Rappuport, Wiley, New York Chap. 25
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For pertinent reviews, see: I. Ojima, in "The Chemistry of Organic Silicon Compounds," ed by S. Patai and Z. Rappuport, Wiley, New York (1989), Chap. 25; T. Don Tilley, in "The Chemistry of Organic Silicon Compounds," ed by S. Patai and Z. Pappoport, Wiley, New York (1989). Chap. 24.
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The Chemistry of Organic Silicon Compounds
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Ojima, I.1
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23
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85033827096
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ed by S. Patai and Z. Pappoport, Wiley, New York Chap. 24
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For pertinent reviews, see: I. Ojima, in "The Chemistry of Organic Silicon Compounds," ed by S. Patai and Z. Rappuport, Wiley, New York (1989), Chap. 25; T. Don Tilley, in "The Chemistry of Organic Silicon Compounds," ed by S. Patai and Z. Pappoport, Wiley, New York (1989). Chap. 24.
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(1989)
The Chemistry of Organic Silicon Compounds
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Don Tilley, T.1
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24
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85033811832
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note
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2PhSiH were obtained in 65% and 97% yield, respectively, under the standard conditions given in the Table 1.
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25
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0001734919
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A. Onopchenko, E. T. Sabourin, and D. L. Beach, J. Org. Chem., 48, 5101 (1983); R. Takeuchi, H. Yasue, and I. Ebata, "42rd Symposium on Organometallic Chemistry," Hiroshima, 1995, Abstr., No. PB 225, Organometallics, in press.
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