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Goldberg, K. I, Goldman, A. S, Eds
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(b) Activation and Functionalizalion of C-H Bonds; Goldberg, K. I., Goldman, A. S., Eds.; ACS Symposium Series 885;
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American Chemical Society: Washington DC, 2004.
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(a) Hölderich, W. F.; Roberge, D. M. In Fine Chemicals through Heterogeneous Catalysis: Sheldon, R. A., van Bekkum, H., Eds.; Wilev-VCH: New York, 2001; pp 427-437.
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(b) Olah, G. A.; Molnár, A. Hydrocarbon Chemistry, 2nd ed.; Wiley: Hoboken, NJ, 2003; pp 62-64.
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For reviews on early examples: a
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For reviews on early examples: (a) Crabtree, R. H. Chem. Rev. 1985, 85, 245-269.
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Crabtree, R.H.1
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Dyker, G, Ed, Wiley-VCH: Weinherm
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(b) Goldman, A. S.; Ghosh, R. In Handbook of C-H Transformations: Applications in Organic Synthesis; Dyker, G., Ed.; Wiley-VCH: Weinherm. 2005; Vol. 2. pp 616-622.
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Handbook of C-H Transformations: Applications in Organic Synthesis
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Goldman, A.S.1
Ghosh, R.2
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9
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(a) Gupta, M.; Hagen, C; Flesher, R. J.; Kaska, W. C; Jensen, C. M. Qhem. Commun. 1996, 2083-2084.
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(b) Gupta, M.; Hagen, C; Kaska, W. C; Cramer. R. E.; Jensen, C. M. J Am. Chem. Soc. 1997, 119, 840-841.
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(a) Haenel, M. W.; Oevers, S.; Angermund, K.; Kaska, W. C; Fan, H.-J.; Hall, M. B. Angew. Chem., Int. Ed. 2001, 40, 3596-3600.
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Haenel, M.W.1
Oevers, S.2
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Kaska, W.C.4
Fan, H.-J.5
Hall, M.B.6
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(b) Krogh-Jespersen. K.; Czerw, M.; Summa, N.; Renkema, K. B.; Achord, P. D.; Goldman, A. S. J Am. Chem. Soc. 2002, 124, 11404-11416.
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J Am. Chem. Soc
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Krogh-Jespersen, K.1
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Summa, N.3
Renkema, K.B.4
Achord, P.D.5
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Goldman, A. S.; Roy, A. H.; Huang, Z.; Ahuja, R.; Schinski, W.; Brookhart, M. Science 2006, 312, 257-261.
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Science
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(c) Gu, X.-Q.; Chen, W.; Morales-Morales,D.; Jensen, C. M. J .Mol. Catal. 2002, 189. 119-124.
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J .Mol. Catal
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Yi, C. S.; Zeczycki, T. N.; Guzei, 1. A. Organometallics 2006, 25. 1047-1051.
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(a) Yi, C. S.; Zeczycki, T. N.; Guzei, 1. A. Organometallics 2006, 25. 1047-1051.
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64549131985
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See the Supporting Information for experimental details
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See the Supporting Information for experimental details.
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(b) Ohwada, T.; Miura, M.; Tanaka, H.; Sakamoto, S.; Yamaguchi, K.; Ikeda, H.; Inagaki, S. J.Am. Chem. Soc. 2001, 123, 10164-10172.
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Yamaguchi, K.5
Ikeda, H.6
Inagaki, S.7
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28
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0003487210
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For general treatments of the monohydride vs dihydride mechanism on the olefin hydrogenation, see: a, University Science Books: Mill Valley, CA
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For general treatments of the monohydride vs dihydride mechanism on the olefin hydrogenation, see: (a) Collman, J. P.; Hegedus, L. S.; Norton, J. R.; Finke, R. G. Principles and Applications of Organotransition Metal Chemistry; University Science Books: Mill Valley, CA, 1987; pp 523-541.
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Kluwer: Boston, MA
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(b) Chaloner, P. A.; Esteruelas, M. A.; Joo, F.; Oro, L. A. Homogeneous Hydrogenation; Kluwer: Boston, MA, 1994.
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Homogeneous Hydrogenation
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Esteruelas, M.A.2
Joo, F.3
Oro, L.A.4
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Selected recent examples of the dehydrogenation of indoline by heterogeneous metal catalysts: (a) Hara, T.; Mori, K.; Mizugaki, T.; Ebitani, K.; Kaneda. K. Tetrahedron Lett. 2003, 44, 6207-6210.
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Selected recent examples of the dehydrogenation of indoline by heterogeneous metal catalysts: (a) Hara, T.; Mori, K.; Mizugaki, T.; Ebitani, K.; Kaneda. K. Tetrahedron Lett. 2003, 44, 6207-6210.
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(b) Kamata, K.; Kasai, 1; Yamaguchi, K.; Mizuno, N. Org. Lett. 2004, 6, 3577-3580.
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(c) Kotani, M.; Koike, T.; Yamaguchi, K.; Mizuno, N. Green Chem. 2006, 8, 735-741.
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