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Volumn 101, Issue 36, 1997, Pages 6798-6806

A new aspect for the insertion of the 16-electron species (η5-C5H5)ML into saturated hydrocarbons. A (η5-C5H5)ML + CH4 (M = Rh, Ir; L = CO, SH2, PH3) case study

Author keywords

[No Author keywords available]

Indexed keywords

ADDITION REACTIONS; COMPOSITION EFFECTS; ELECTRONS; HYDROCARBONS; HYDROGEN BONDS; OXIDATION;

EID: 0031552982     PISSN: 10895639     EISSN: None     Source Type: Journal    
DOI: 10.1021/jp970021o     Document Type: Article
Times cited : (24)

References (89)
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    • For reviews, see: (a) Parshall, G. W. Acc. Chem. Res. 1975, 8, 113. (b) Bergman, R. G. Science 1984, 223, 902. (c) Janowicz, A. H.; Perima, R. A.; Buchanan, J. M.; Kovac, C. A.; Struker, J. M.; Wax, M. J.; Bergman, R. G. Pure Appl. Chem. 1984, 56, 13. (d) Hill, C. L. Activation and Functionalization of Alkanes; Wiley: New York, 1989. (e) Halpern, J. Inorg. Chim. Acta 1985, 100, 41. (f) Ephritikhine, M. New J. Chem. 1986, 10, 9. (g) Jones, W. D.; Feher, F. J. Acc. Chem. Res. 1989, 22, 91. (h) Ryabov, A. D. Chem. Rev. 1990, 90, 403. (i) Davies, J. A.; Watson, P. L.; Liebman, J. F.; Greenberg, A. Selective Hydrocarbon Activation, Principles and Progress; VCH: New York, 1990. (j) Bergman, R. G. J. Organomet. Chem. 1990, 400, 273. (k) Bergman, R. G. Adv. Chem. Ser. 1992, 230, 211. (l) Wasserman, E. P.; Moore, C. B.; Bergman, R. G. Science 1992, 255, 315. (m) Crabtree, R. H. Angew. Chem., Int. Ed. Engl. 1993, 32, 789. (n) Schroder, D.; Schwarz, H. Ibid. 1995, 34, 1937. (o) Lees, A. J.; Purwoko, A. A. Coord. Chem. Rev. 1994, 132, 155. (p) Amdtsen, B. A.; Bergman, R. G.; Mobley, T. A.; Peterson, T. H. Acc. Chem. Res. 1995, 28, 154.
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    • Musaev, D.G.1    Morokuma, K.2
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    • note
    • 10) to describe the reaction trajectory and define the axis of attack of the valence orbital on the central metal.
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    • However, this prediction cannot apply to the CpCoL systems. For theoretical works, see ref 4e. For experimental works, see: (a) Rest, A. J.; Whitwell, I.; Graham, W. A. G.; Hoyano, J. K.; McMaster, A. D J. Chem. Soc., Dalton Trans. 1987, 1181. (b) Janowicz, A. H.; Bryndza, H. E.; Bergman, R. G. J. Am. Chem. Soc. 1981, 103, 1516. (c) Wasserman, E. P.; Bergman, R. G.; Moore, C. B. ibid. 1988, 110, 6076. (d) Bengali, A. A.; Bergman, R. G.; Moore, C. B. Ibid. 1995, 117, 3879. Also see ref 28.
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    • However, this prediction cannot apply to the CpCoL systems. For theoretical works, see ref 4e. For experimental works, see: (a) Rest, A. J.; Whitwell, I.; Graham, W. A. G.; Hoyano, J. K.; McMaster, A. D J. Chem. Soc., Dalton Trans. 1987, 1181. (b) Janowicz, A. H.; Bryndza, H. E.; Bergman, R. G. J. Am. Chem. Soc. 1981, 103, 1516. (c) Wasserman, E. P.; Bergman, R. G.; Moore, C. B. ibid. 1988, 110, 6076. (d) Bengali, A. A.; Bergman, R. G.; Moore, C. B. Ibid. 1995, 117, 3879. Also see ref 28.
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    • However, this prediction cannot apply to the CpCoL systems. For theoretical works, see ref 4e. For experimental works, see: (a) Rest, A. J.; Whitwell, I.; Graham, W. A. G.; Hoyano, J. K.; McMaster, A. D J. Chem. Soc., Dalton Trans. 1987, 1181. (b) Janowicz, A. H.; Bryndza, H. E.; Bergman, R. G. J. Am. Chem. Soc. 1981, 103, 1516. (c) Wasserman, E. P.; Bergman, R. G.; Moore, C. B. ibid. 1988, 110, 6076. (d) Bengali, A. A.; Bergman, R. G.; Moore, C. B. Ibid. 1995, 117, 3879. Also see ref 28.
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    • Wasserman, E.P.1    Bergman, R.G.2    Moore, C.B.3
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    • Also see ref 28
    • However, this prediction cannot apply to the CpCoL systems. For theoretical works, see ref 4e. For experimental works, see: (a) Rest, A. J.; Whitwell, I.; Graham, W. A. G.; Hoyano, J. K.; McMaster, A. D J. Chem. Soc., Dalton Trans. 1987, 1181. (b) Janowicz, A. H.; Bryndza, H. E.; Bergman, R. G. J. Am. Chem. Soc. 1981, 103, 1516. (c) Wasserman, E. P.; Bergman, R. G.; Moore, C. B. ibid. 1988, 110, 6076. (d) Bengali, A. A.; Bergman, R. G.; Moore, C. B. Ibid. 1995, 117, 3879. Also see ref 28.
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    • Bengali, A.A.1    Bergman, R.G.2    Moore, C.B.3
  • 77
    • 4043136650 scopus 로고    scopus 로고
    • note
    • It must be noted that for real ligands, of course, σ-donating power and π-accepting power are always interrelated.
  • 84
    • 4043097027 scopus 로고    scopus 로고
    • note
    • At the MP2/LANL1DZ level, the linear relationship is y = 0.226x + 7.47.
  • 85
    • 4043074280 scopus 로고    scopus 로고
    • note
    • At the MP2/LANL1DZ level, the linear relationship is y′ = 0.889x - 22.4.
  • 86
    • 4043122615 scopus 로고    scopus 로고
    • note
    • 2) involved in Figure 8, in the CpCoL case, there could be three predominant configurations contributed to the total wave function Ψ, i.e., a closed-shell singlet, two open-shell triplet (so overall singlet), and an open-shell singlet. This study, however, is beyond the scope of the present work and will not be discussed here.
  • 87
    • 4043101205 scopus 로고    scopus 로고
    • note
    • Conversely, since reductive elimination involves the charge transfer from methane to metal, the electron-withdrawing L should stabilize the CpML compound and then allow such a reaction to proceed readily.
  • 88
    • 4043177791 scopus 로고    scopus 로고
    • note
    • Further work investigating the effect of the electronegativity of the ancillary ligand L on the reactivity of the CpML systems is underway.


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