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Edited by S. Patai and Z. Rappoport. Wiley, New York Chap 25
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(a) I. Ojima. The chemistry of organic silicon compounds. Edited by S. Patai and Z. Rappoport. Wiley, New York. 1989. Chap 25, p 1479;
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The Chemistry of Organic Silicon Compounds
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Ojima, I.1
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13
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2 silicon atoms: (a) D.A. Straus, S.D. Grumbine, and T.D. Tilley. J. Am. Chem. Soc. 112, 7801 (1990); (b) S.D. Grumbine, T.D. Tilley, and A.L. Rheingold. J. Am. Chem. Soc. 115, 358 (1993); (c) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 115, 7884 (1993); (d) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 116, 5495 (1994); (e) S.D. Grumbine, D.A. Straus, T.D. Tilley, and A.L. Rheingold. Polyhedron, 14, 127 (1995); (f) G.P. Mitchell and T.D. Tilley. Angew. Chem. Int. Ed. 37, 2524 (1995); (g) P.W. Wanandi, P.B. Glaser, and T.D. Tilley. J. Am. Chem. Soc. 122, 972 (2000); (h) B.V. Mork, and T.D. Tilley. J. Am. Chem. Soc. 123, 9702 (2001); (i) S.R. Klei, T.D. Tilley, and R.G. Bergman. Organometallics, 20, 3220 (2001); (j) K. Ueno, S. Asami, N. Watanabe, and H. Ogino. Organometallics, 21, 1326 (2002); (k) M. Denk, R.K. Hayashi, and R. West. Chem. Commun. 33 (1994); (l) B. Gehrhus, P.B. Hitchcock, M.F. Lappert, and H. Maciejewski. Organometallics, 17, 5599 (1998); (m) S.H.A. Petri, D. Eikenberg, B. Neumann, H.-G. Stammler, and P. Jutzi. Organometallics, 18, 2615 (1999); (n) X. Cai, B. Gehrhus, P.B. Hitchcock, and M.F. Lappert. Can. J. Chem. 78, 1484 (2000); (o) D. Amoroso, M. Haaf, G.P.A. Yap, R. West, and D.E. Fogg. Organometallics, 21, 534 (2002); (p) W.A. Herrmann, P. Härter, C.W.K. Gstöttmayr, F. Bielert, N. Seeboth, and P. Sirsch. J. Organomet. Chem. 649, 141 (2002).
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Straus, D.A.1
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Tilley, T.D.3
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14
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2 silicon atoms: (a) D.A. Straus, S.D. Grumbine, and T.D. Tilley. J. Am. Chem. Soc. 112, 7801 (1990); (b) S.D. Grumbine, T.D. Tilley, and A.L. Rheingold. J. Am. Chem. Soc. 115, 358 (1993); (c) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 115, 7884 (1993); (d) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 116, 5495 (1994); (e) S.D. Grumbine, D.A. Straus, T.D. Tilley, and A.L. Rheingold. Polyhedron, 14, 127 (1995); (f) G.P. Mitchell and T.D. Tilley. Angew. Chem. Int. Ed. 37, 2524 (1995); (g) P.W. Wanandi, P.B. Glaser, and T.D. Tilley. J. Am. Chem. Soc. 122, 972 (2000); (h) B.V. Mork, and T.D. Tilley. J. Am. Chem. Soc. 123, 9702 (2001); (i) S.R. Klei, T.D. Tilley, and R.G. Bergman. Organometallics, 20, 3220 (2001); (j) K. Ueno, S. Asami, N. Watanabe, and H. Ogino. Organometallics, 21, 1326 (2002); (k) M. Denk, R.K. Hayashi, and R. West. Chem. Commun. 33 (1994); (l) B. Gehrhus, P.B. Hitchcock, M.F. Lappert, and H. Maciejewski. Organometallics, 17, 5599 (1998); (m) S.H.A. Petri, D. Eikenberg, B. Neumann, H.-G. Stammler, and P. Jutzi. Organometallics, 18, 2615 (1999); (n) X. Cai, B. Gehrhus, P.B. Hitchcock, and M.F. Lappert. Can. J. Chem. 78, 1484 (2000); (o) D. Amoroso, M. Haaf, G.P.A. Yap, R. West, and D.E. Fogg. Organometallics, 21, 534 (2002); (p) W.A. Herrmann, P. Härter, C.W.K. Gstöttmayr, F. Bielert, N. Seeboth, and P. Sirsch. J. Organomet. Chem. 649, 141 (2002).
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Grumbine, S.D.1
Tilley, T.D.2
Rheingold, A.L.3
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15
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0001613531
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2 silicon atoms: (a) D.A. Straus, S.D. Grumbine, and T.D. Tilley. J. Am. Chem. Soc. 112, 7801 (1990); (b) S.D. Grumbine, T.D. Tilley, and A.L. Rheingold. J. Am. Chem. Soc. 115, 358 (1993); (c) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 115, 7884 (1993); (d) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 116, 5495 (1994); (e) S.D. Grumbine, D.A. Straus, T.D. Tilley, and A.L. Rheingold. Polyhedron, 14, 127 (1995); (f) G.P. Mitchell and T.D. Tilley. Angew. Chem. Int. Ed. 37, 2524 (1995); (g) P.W. Wanandi, P.B. Glaser, and T.D. Tilley. J. Am. Chem. Soc. 122, 972 (2000); (h) B.V. Mork, and T.D. Tilley. J. Am. Chem. Soc. 123, 9702 (2001); (i) S.R. Klei, T.D. Tilley, and R.G. Bergman. Organometallics, 20, 3220 (2001); (j) K. Ueno, S. Asami, N. Watanabe, and H. Ogino. Organometallics, 21, 1326 (2002); (k) M. Denk, R.K. Hayashi, and R. West. Chem. Commun. 33 (1994); (l) B. Gehrhus, P.B. Hitchcock, M.F. Lappert, and H. Maciejewski. Organometallics, 17, 5599 (1998); (m) S.H.A. Petri, D. Eikenberg, B. Neumann, H.-G. Stammler, and P. Jutzi. Organometallics, 18, 2615 (1999); (n) X. Cai, B. Gehrhus, P.B. Hitchcock, and M.F. Lappert. Can. J. Chem. 78, 1484 (2000); (o) D. Amoroso, M. Haaf, G.P.A. Yap, R. West, and D.E. Fogg. Organometallics, 21, 534 (2002); (p) W.A. Herrmann, P. Härter, C.W.K. Gstöttmayr, F. Bielert, N. Seeboth, and P. Sirsch. J. Organomet. Chem. 649, 141 (2002).
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J. Am. Chem Soc.
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Grumbine, S.D.1
Tilley, T.D.2
Arnold, F.P.3
Rheingold, A.L.4
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16
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11644310835
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2 silicon atoms: (a) D.A. Straus, S.D. Grumbine, and T.D. Tilley. J. Am. Chem. Soc. 112, 7801 (1990); (b) S.D. Grumbine, T.D. Tilley, and A.L. Rheingold. J. Am. Chem. Soc. 115, 358 (1993); (c) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 115, 7884 (1993); (d) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 116, 5495 (1994); (e) S.D. Grumbine, D.A. Straus, T.D. Tilley, and A.L. Rheingold. Polyhedron, 14, 127 (1995); (f) G.P. Mitchell and T.D. Tilley. Angew. Chem. Int. Ed. 37, 2524 (1995); (g) P.W. Wanandi, P.B. Glaser, and T.D. Tilley. J. Am. Chem. Soc. 122, 972 (2000); (h) B.V. Mork, and T.D. Tilley. J. Am. Chem. Soc. 123, 9702 (2001); (i) S.R. Klei, T.D. Tilley, and R.G. Bergman. Organometallics, 20, 3220 (2001); (j) K. Ueno, S. Asami, N. Watanabe, and H. Ogino. Organometallics, 21, 1326 (2002); (k) M. Denk, R.K. Hayashi, and R. West. Chem. Commun. 33 (1994); (l) B. Gehrhus, P.B. Hitchcock, M.F. Lappert, and H. Maciejewski. Organometallics, 17, 5599 (1998); (m) S.H.A. Petri, D. Eikenberg, B. Neumann, H.-G. Stammler, and P. Jutzi. Organometallics, 18, 2615 (1999); (n) X. Cai, B. Gehrhus, P.B. Hitchcock, and M.F. Lappert. Can. J. Chem. 78, 1484 (2000); (o) D. Amoroso, M. Haaf, G.P.A. Yap, R. West, and D.E. Fogg. Organometallics, 21, 534 (2002); (p) W.A. Herrmann, P. Härter, C.W.K. Gstöttmayr, F. Bielert, N. Seeboth, and P. Sirsch. J. Organomet. Chem. 649, 141 (2002).
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J. Am. Chem Soc.
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Grumbine, S.D.1
Tilley, T.D.2
Arnold, F.P.3
Rheingold, A.L.4
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17
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0000063286
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2 silicon atoms: (a) D.A. Straus, S.D. Grumbine, and T.D. Tilley. J. Am. Chem. Soc. 112, 7801 (1990); (b) S.D. Grumbine, T.D. Tilley, and A.L. Rheingold. J. Am. Chem. Soc. 115, 358 (1993); (c) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 115, 7884 (1993); (d) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 116, 5495 (1994); (e) S.D. Grumbine, D.A. Straus, T.D. Tilley, and A.L. Rheingold. Polyhedron, 14, 127 (1995); (f) G.P. Mitchell and T.D. Tilley. Angew. Chem. Int. Ed. 37, 2524 (1995); (g) P.W. Wanandi, P.B. Glaser, and T.D. Tilley. J. Am. Chem. Soc. 122, 972 (2000); (h) B.V. Mork, and T.D. Tilley. J. Am. Chem. Soc. 123, 9702 (2001); (i) S.R. Klei, T.D. Tilley, and R.G. Bergman. Organometallics, 20, 3220 (2001); (j) K. Ueno, S. Asami, N. Watanabe, and H. Ogino. Organometallics, 21, 1326 (2002); (k) M. Denk, R.K. Hayashi, and R. West. Chem. Commun. 33 (1994); (l) B. Gehrhus, P.B. Hitchcock, M.F. Lappert, and H. Maciejewski. Organometallics, 17, 5599 (1998); (m) S.H.A. Petri, D. Eikenberg, B. Neumann, H.-G. Stammler, and P. Jutzi. Organometallics, 18, 2615 (1999); (n) X. Cai, B. Gehrhus, P.B. Hitchcock, and M.F. Lappert. Can. J. Chem. 78, 1484 (2000); (o) D. Amoroso, M. Haaf, G.P.A. Yap, R. West, and D.E. Fogg. Organometallics, 21, 534 (2002); (p) W.A. Herrmann, P. Härter, C.W.K. Gstöttmayr, F. Bielert, N. Seeboth, and P. Sirsch. J. Organomet. Chem. 649, 141 (2002).
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Polyhedron
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Grumbine, S.D.1
Straus, D.A.2
Tilley, T.D.3
Rheingold, A.L.4
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18
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0032476165
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2 silicon atoms: (a) D.A. Straus, S.D. Grumbine, and T.D. Tilley. J. Am. Chem. Soc. 112, 7801 (1990); (b) S.D. Grumbine, T.D. Tilley, and A.L. Rheingold. J. Am. Chem. Soc. 115, 358 (1993); (c) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 115, 7884 (1993); (d) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 116, 5495 (1994); (e) S.D. Grumbine, D.A. Straus, T.D. Tilley, and A.L. Rheingold. Polyhedron, 14, 127 (1995); (f) G.P. Mitchell and T.D. Tilley. Angew. Chem. Int. Ed. 37, 2524 (1995); (g) P.W. Wanandi, P.B. Glaser, and T.D. Tilley. J. Am. Chem. Soc. 122, 972 (2000); (h) B.V. Mork, and T.D. Tilley. J. Am. Chem. Soc. 123, 9702 (2001); (i) S.R. Klei, T.D. Tilley, and R.G. Bergman. Organometallics, 20, 3220 (2001); (j) K. Ueno, S. Asami, N. Watanabe, and H. Ogino. Organometallics, 21, 1326 (2002); (k) M. Denk, R.K. Hayashi, and R. West. Chem. Commun. 33 (1994); (l) B. Gehrhus, P.B. Hitchcock, M.F. Lappert, and H. Maciejewski. Organometallics, 17, 5599 (1998); (m) S.H.A. Petri, D. Eikenberg, B. Neumann, H.-G. Stammler, and P. Jutzi. Organometallics, 18, 2615 (1999); (n) X. Cai, B. Gehrhus, P.B. Hitchcock, and M.F. Lappert. Can. J. Chem. 78, 1484 (2000); (o) D. Amoroso, M. Haaf, G.P.A. Yap, R. West, and D.E. Fogg. Organometallics, 21, 534 (2002); (p) W.A. Herrmann, P. Härter, C.W.K. Gstöttmayr, F. Bielert, N. Seeboth, and P. Sirsch. J. Organomet. Chem. 649, 141 (2002).
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Mitchell, G.P.1
Tilley, T.D.2
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19
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0034624423
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2 silicon atoms: (a) D.A. Straus, S.D. Grumbine, and T.D. Tilley. J. Am. Chem. Soc. 112, 7801 (1990); (b) S.D. Grumbine, T.D. Tilley, and A.L. Rheingold. J. Am. Chem. Soc. 115, 358 (1993); (c) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 115, 7884 (1993); (d) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 116, 5495 (1994); (e) S.D. Grumbine, D.A. Straus, T.D. Tilley, and A.L. Rheingold. Polyhedron, 14, 127 (1995); (f) G.P. Mitchell and T.D. Tilley. Angew. Chem. Int. Ed. 37, 2524 (1995); (g) P.W. Wanandi, P.B. Glaser, and T.D. Tilley. J. Am. Chem. Soc. 122, 972 (2000); (h) B.V. Mork, and T.D. Tilley. J. Am. Chem. Soc. 123, 9702 (2001); (i) S.R. Klei, T.D. Tilley, and R.G. Bergman. Organometallics, 20, 3220 (2001); (j) K. Ueno, S. Asami, N. Watanabe, and H. Ogino. Organometallics, 21, 1326 (2002); (k) M. Denk, R.K. Hayashi, and R. West. Chem. Commun. 33 (1994); (l) B. Gehrhus, P.B. Hitchcock, M.F. Lappert, and H. Maciejewski. Organometallics, 17, 5599 (1998); (m) S.H.A. Petri, D. Eikenberg, B. Neumann, H.-G. Stammler, and P. Jutzi. Organometallics, 18, 2615 (1999); (n) X. Cai, B. Gehrhus, P.B. Hitchcock, and M.F. Lappert. Can. J. Chem. 78, 1484 (2000); (o) D. Amoroso, M. Haaf, G.P.A. Yap, R. West, and D.E. Fogg. Organometallics, 21, 534 (2002); (p) W.A. Herrmann, P. Härter, C.W.K. Gstöttmayr, F. Bielert, N. Seeboth, and P. Sirsch. J. Organomet. Chem. 649, 141 (2002).
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Wanandi, P.W.1
Glaser, P.B.2
Tilley, T.D.3
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20
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2 silicon atoms: (a) D.A. Straus, S.D. Grumbine, and T.D. Tilley. J. Am. Chem. Soc. 112, 7801 (1990); (b) S.D. Grumbine, T.D. Tilley, and A.L. Rheingold. J. Am. Chem. Soc. 115, 358 (1993); (c) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 115, 7884 (1993); (d) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 116, 5495 (1994); (e) S.D. Grumbine, D.A. Straus, T.D. Tilley, and A.L. Rheingold. Polyhedron, 14, 127 (1995); (f) G.P. Mitchell and T.D. Tilley. Angew. Chem. Int. Ed. 37, 2524 (1995); (g) P.W. Wanandi, P.B. Glaser, and T.D. Tilley. J. Am. Chem. Soc. 122, 972 (2000); (h) B.V. Mork, and T.D. Tilley. J. Am. Chem. Soc. 123, 9702 (2001); (i) S.R. Klei, T.D. Tilley, and R.G. Bergman. Organometallics, 20, 3220 (2001); (j) K. Ueno, S. Asami, N. Watanabe, and H. Ogino. Organometallics, 21, 1326 (2002); (k) M. Denk, R.K. Hayashi, and R. West. Chem. Commun. 33 (1994); (l) B. Gehrhus, P.B. Hitchcock, M.F. Lappert, and H. Maciejewski. Organometallics, 17, 5599 (1998); (m) S.H.A. Petri, D. Eikenberg, B. Neumann, H.-G. Stammler, and P. Jutzi. Organometallics, 18, 2615 (1999); (n) X. Cai, B. Gehrhus, P.B. Hitchcock, and M.F. Lappert. Can. J. Chem. 78, 1484 (2000); (o) D. Amoroso, M. Haaf, G.P.A. Yap, R. West, and D.E. Fogg. Organometallics, 21, 534 (2002); (p) W.A. Herrmann, P. Härter, C.W.K. Gstöttmayr, F. Bielert, N. Seeboth, and P. Sirsch. J. Organomet. Chem. 649, 141 (2002).
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Mork, B.V.1
Tilley, T.D.2
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2 silicon atoms: (a) D.A. Straus, S.D. Grumbine, and T.D. Tilley. J. Am. Chem. Soc. 112, 7801 (1990); (b) S.D. Grumbine, T.D. Tilley, and A.L. Rheingold. J. Am. Chem. Soc. 115, 358 (1993); (c) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 115, 7884 (1993); (d) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 116, 5495 (1994); (e) S.D. Grumbine, D.A. Straus, T.D. Tilley, and A.L. Rheingold. Polyhedron, 14, 127 (1995); (f) G.P. Mitchell and T.D. Tilley. Angew. Chem. Int. Ed. 37, 2524 (1995); (g) P.W. Wanandi, P.B. Glaser, and T.D. Tilley. J. Am. Chem. Soc. 122, 972 (2000); (h) B.V. Mork, and T.D. Tilley. J. Am. Chem. Soc. 123, 9702 (2001); (i) S.R. Klei, T.D. Tilley, and R.G. Bergman. Organometallics, 20, 3220 (2001); (j) K. Ueno, S. Asami, N. Watanabe, and H. Ogino. Organometallics, 21, 1326 (2002); (k) M. Denk, R.K. Hayashi, and R. West. Chem. Commun. 33 (1994); (l) B. Gehrhus, P.B. Hitchcock, M.F. Lappert, and H. Maciejewski. Organometallics, 17, 5599 (1998); (m) S.H.A. Petri, D. Eikenberg, B. Neumann, H.-G. Stammler, and P. Jutzi. Organometallics, 18, 2615 (1999); (n) X. Cai, B. Gehrhus, P.B. Hitchcock, and M.F. Lappert. Can. J. Chem. 78, 1484 (2000); (o) D. Amoroso, M. Haaf, G.P.A. Yap, R. West, and D.E. Fogg. Organometallics, 21, 534 (2002); (p) W.A. Herrmann, P. Härter, C.W.K. Gstöttmayr, F. Bielert, N. Seeboth, and P. Sirsch. J. Organomet. Chem. 649, 141 (2002).
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Organometallics
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Klei, S.R.1
Tilley, T.D.2
Bergman, R.G.3
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2 silicon atoms: (a) D.A. Straus, S.D. Grumbine, and T.D. Tilley. J. Am. Chem. Soc. 112, 7801 (1990); (b) S.D. Grumbine, T.D. Tilley, and A.L. Rheingold. J. Am. Chem. Soc. 115, 358 (1993); (c) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 115, 7884 (1993); (d) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 116, 5495 (1994); (e) S.D. Grumbine, D.A. Straus, T.D. Tilley, and A.L. Rheingold. Polyhedron, 14, 127 (1995); (f) G.P. Mitchell and T.D. Tilley. Angew. Chem. Int. Ed. 37, 2524 (1995); (g) P.W. Wanandi, P.B. Glaser, and T.D. Tilley. J. Am. Chem. Soc. 122, 972 (2000); (h) B.V. Mork, and T.D. Tilley. J. Am. Chem. Soc. 123, 9702 (2001); (i) S.R. Klei, T.D. Tilley, and R.G. Bergman. Organometallics, 20, 3220 (2001); (j) K. Ueno, S. Asami, N. Watanabe, and H. Ogino. Organometallics, 21, 1326 (2002); (k) M. Denk, R.K. Hayashi, and R. West. Chem. Commun. 33 (1994); (l) B. Gehrhus, P.B. Hitchcock, M.F. Lappert, and H. Maciejewski. Organometallics, 17, 5599 (1998); (m) S.H.A. Petri, D. Eikenberg, B. Neumann, H.-G. Stammler, and P. Jutzi. Organometallics, 18, 2615 (1999); (n) X. Cai, B. Gehrhus, P.B. Hitchcock, and M.F. Lappert. Can. J. Chem. 78, 1484 (2000); (o) D. Amoroso, M. Haaf, G.P.A. Yap, R. West, and D.E. Fogg. Organometallics, 21, 534 (2002); (p) W.A. Herrmann, P. Härter, C.W.K. Gstöttmayr, F. Bielert, N. Seeboth, and P. Sirsch. J. Organomet. Chem. 649, 141 (2002).
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Organometallics
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Ueno, K.1
Asami, S.2
Watanabe, N.3
Ogino, H.4
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2 silicon atoms: (a) D.A. Straus, S.D. Grumbine, and T.D. Tilley. J. Am. Chem. Soc. 112, 7801 (1990); (b) S.D. Grumbine, T.D. Tilley, and A.L. Rheingold. J. Am. Chem. Soc. 115, 358 (1993); (c) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 115, 7884 (1993); (d) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 116, 5495 (1994); (e) S.D. Grumbine, D.A. Straus, T.D. Tilley, and A.L. Rheingold. Polyhedron, 14, 127 (1995); (f) G.P. Mitchell and T.D. Tilley. Angew. Chem. Int. Ed. 37, 2524 (1995); (g) P.W. Wanandi, P.B. Glaser, and T.D. Tilley. J. Am. Chem. Soc. 122, 972 (2000); (h) B.V. Mork, and T.D. Tilley. J. Am. Chem. Soc. 123, 9702 (2001); (i) S.R. Klei, T.D. Tilley, and R.G. Bergman. Organometallics, 20, 3220 (2001); (j) K. Ueno, S. Asami, N. Watanabe, and H. Ogino. Organometallics, 21, 1326 (2002); (k) M. Denk, R.K. Hayashi, and R. West. Chem. Commun. 33 (1994); (l) B. Gehrhus, P.B. Hitchcock, M.F. Lappert, and H. Maciejewski. Organometallics, 17, 5599 (1998); (m) S.H.A. Petri, D. Eikenberg, B. Neumann, H.-G. Stammler, and P. Jutzi. Organometallics, 18, 2615 (1999); (n) X. Cai, B. Gehrhus, P.B. Hitchcock, and M.F. Lappert. Can. J. Chem. 78, 1484 (2000); (o) D. Amoroso, M. Haaf, G.P.A. Yap, R. West, and D.E. Fogg. Organometallics, 21, 534 (2002); (p) W.A. Herrmann, P. Härter, C.W.K. Gstöttmayr, F. Bielert, N. Seeboth, and P. Sirsch. J. Organomet. Chem. 649, 141 (2002).
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2 silicon atoms: (a) D.A. Straus, S.D. Grumbine, and T.D. Tilley. J. Am. Chem. Soc. 112, 7801 (1990); (b) S.D. Grumbine, T.D. Tilley, and A.L. Rheingold. J. Am. Chem. Soc. 115, 358 (1993); (c) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 115, 7884 (1993); (d) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 116, 5495 (1994); (e) S.D. Grumbine, D.A. Straus, T.D. Tilley, and A.L. Rheingold. Polyhedron, 14, 127 (1995); (f) G.P. Mitchell and T.D. Tilley. Angew. Chem. Int. Ed. 37, 2524 (1995); (g) P.W. Wanandi, P.B. Glaser, and T.D. Tilley. J. Am. Chem. Soc. 122, 972 (2000); (h) B.V. Mork, and T.D. Tilley. J. Am. Chem. Soc. 123, 9702 (2001); (i) S.R. Klei, T.D. Tilley, and R.G. Bergman. Organometallics, 20, 3220 (2001); (j) K. Ueno, S. Asami, N. Watanabe, and H. Ogino. Organometallics, 21, 1326 (2002); (k) M. Denk, R.K. Hayashi, and R. West. Chem. Commun. 33 (1994); (l) B. Gehrhus, P.B. Hitchcock, M.F. Lappert, and H. Maciejewski. Organometallics, 17, 5599 (1998); (m) S.H.A. Petri, D. Eikenberg, B. Neumann, H.-G. Stammler, and P. Jutzi. Organometallics, 18, 2615 (1999); (n) X. Cai, B. Gehrhus, P.B. Hitchcock, and M.F. Lappert. Can. J. Chem. 78, 1484 (2000); (o) D. Amoroso, M. Haaf, G.P.A. Yap, R. West, and D.E. Fogg. Organometallics, 21, 534 (2002); (p) W.A. Herrmann, P. Härter, C.W.K. Gstöttmayr, F. Bielert, N. Seeboth, and P. Sirsch. J. Organomet. Chem. 649, 141 (2002).
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2 silicon atoms: (a) D.A. Straus, S.D. Grumbine, and T.D. Tilley. J. Am. Chem. Soc. 112, 7801 (1990); (b) S.D. Grumbine, T.D. Tilley, and A.L. Rheingold. J. Am. Chem. Soc. 115, 358 (1993); (c) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 115, 7884 (1993); (d) S.D. Grumbine, T.D. Tilley, F.P. Arnold, and A.L. Rheingold. J. Am. Chem Soc. 116, 5495 (1994); (e) S.D. Grumbine, D.A. Straus, T.D. Tilley, and A.L. Rheingold. Polyhedron, 14, 127 (1995); (f) G.P. Mitchell and T.D. Tilley. Angew. Chem. Int. Ed. 37, 2524 (1995); (g) P.W. Wanandi, P.B. Glaser, and T.D. Tilley. J. Am. Chem. Soc. 122, 972 (2000); (h) B.V. Mork, and T.D. Tilley. J. Am. Chem. Soc. 123, 9702 (2001); (i) S.R. Klei, T.D. Tilley, and R.G. Bergman. Organometallics, 20, 3220 (2001); (j) K. Ueno, S. Asami, N. Watanabe, and H. Ogino. Organometallics, 21, 1326 (2002); (k) M. Denk, R.K. Hayashi, and R. West. Chem. Commun. 33 (1994); (l) B. Gehrhus, P.B. Hitchcock, M.F. Lappert, and H. Maciejewski. Organometallics, 17, 5599 (1998); (m) S.H.A. Petri, D. Eikenberg, B. Neumann, H.-G. Stammler, and P. Jutzi. Organometallics, 18, 2615 (1999); (n) X. Cai, B. Gehrhus, P.B. Hitchcock, and M.F. Lappert. Can. J. Chem. 78, 1484 (2000); (o) D. Amoroso, M. Haaf, G.P.A. Yap, R. West, and D.E. Fogg. Organometallics, 21, 534 (2002); (p) W.A. Herrmann, P. Härter, C.W.K. Gstöttmayr, F. Bielert, N. Seeboth, and P. Sirsch. J. Organomet. Chem. 649, 141 (2002).
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