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Been Overlooked?, J. Am. Chem. Soc. , 123 , 5396-5400 (2001). (f) M. Yamanaka
and E. Nakamura, Density Functional Studies on the Pauson-Khand Reaction, J. Am.
Chem. Soc. , 123 , 1703-1708 (2001).
[6] Jordi Vazquez, Theoretical Study on the Mechanism of the Pauson-Khand Reaction ,
Doctoral Thesis, University of Barcelona (Spain), 1999. (b) Torstein Fjermestad,
Computational Studies on the Mechanism of the Pauson-Khand Reaction , Doctoral
Thesis, Rovira i Virgili University (Spain), 2010.
[7] H.-J. Park, B. Y. Lee, Y. K. Kang, and Y. K. Chung, Stereoselective Pauson-
Khand Reactions via the Chiral [(alkyne)Co 2 (CO) 5 {
P(OMe) 3 }
], Organometallics ,
14 , 3104-3107 (1995).
[8] A. R. Kennedy,W. J. Kerr, D. M. Lindsay, J. S. Scott, and S. P.Watson, Stereochemical
and mechanistic features of asymmetric Pauson-Khand processes, J. Chem. Soc.,
Perkin Trans. 1 , 4366-4372 (2000).
[9] N. E. Carpenter and K. M. Nicholas, Some studies involving the use of chiral amine
oxides for the enantioselective preparation of (propargyl alcohol)Co 2 (CO) 5 (PR 3 )
complexes, Polyhedron , 18 , 2027-2034 (1999).
[10] D. R. Carbery, W. J. Kerr, D. M. Lindsay, J. S. Scott, and S. P. Watson, Prepara-
tion and reaction of desymmetrised cobalt alkyne complexes, Tetrahedron Lett. , 41 ,
3235-3239 (2000).
[11] D. T. Rutherford and S. D. R. Christie, Heterobimetallic alkyne complexes in organic
synthesis: an asymmetric variant of the Pauson-Khand reaction, Tetrahedron Lett. ,
39 , 9805-9808 (1998).
[12] Y. K. Chung, B. Y. Lee, N. Jeong, M. Hudecek, and P. L. Pauson, Promoters for the
(alkyne) hexacarbonyldicobalt-based cyclopentenone synthesis, Organometallics , 12 ,
220-223 (1993).
[13] (a) D. R. Carbery, W. J. Kerr, D. M. Lindsay, J. S. Scott, and S. P. Watson, Prepara-
tion and reaction of desymmetrised cobalt alkyne complexes, Tetrahedron Lett. , 41 ,
3235-3239 (2000). (b) W. J. Kerr, G. G. Kirk, and D. Middlemiss, Enantioselective
Pauson-Khand reactions mediated by a chiral amine N-oxide, Synlett , 10 , 1085-1086
(1995).
[14] (a) V. Derdau and S. Laschat, Alkaloid N-oxide promoted asymmetric cobalt-
mediated Pauson-Khand reaction, J. Organomet. Chem. , 642 , 131-136 (2002). (b) V.
Derdau, S. Laschat, and P. G. Jones, Amine N-oxides derived from alkaloids as chiral
promoters in enantioselective Pauson-Khand reactions, Heterocycles , 48 , 1445-1453
(1998).
[15] K. D. Closser, M. M. Quintal, and K. M. Shea, The Scope and Limitations of In-
tramolecular Nicholas and Pauson-Khand Reactions for the Synthesis of Tricyclic
Oxygen- and Nitrogen-Containing Heterocycles, J. Org. Chem. , 74 , 3680-3688
(2009).
[16] (a) X. Verdaguer, A. Moyano M. A. Pericas, A. Riera, V. Bernardes, A. E. Greene,
A. Alvarez-Larena, and J. F. Piniella, A Dual-Function, Highly Efficient Chiral Con-
troller for Stereoselective Intermolecular Pauson-Khand Reactions. J. Am. Chem.
Soc. , 116 , 2153-2154 (1994). (b) I. Marchueta, E. Montenegro, D. Panov, M. Poch,
X. Verdaguer, A. Moyano, M. A. Pericas, and A. Riera, Asymmetric Pauson-Khand
reactions using camphor-derived chelating thiols as chiral controllers. J. Org. Chem. ,
66 , 6400-6409 (2001).
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