Synlett 2002(10): 1706-1708
DOI: 10.1055/s-2002-34209
LETTER
© Georg Thieme Verlag Stuttgart · New York

Michael Addition of Nitroalkanes to Dimethyl Citraconate, with DBU as Base: An Unexpected, One-Pot Synthesis of Polyfunctionalized Carbonyl Derivatives

Roberto Ballini*a, Luciano Barbonia, Giovanna Bosicaa, Dennis Fiorinia, Maria Victoria Gilb
a Dipartimento di Scienze Chimiche, Università, Via S. Agostino 1, 62032 Camerino, Italy
Fax: +39(737)402297; e-Mail: roberto.ballini@unicam.it;
b Departamento de Quimica Organica Facultad de Ciencias, Universidad de Extremadura, 06071 Badajoz, Spain
Further Information

Publication History

Received 6 August 2002
Publication Date:
23 September 2002 (online)

Abstract

Michael addition of nitroalkanes to dimethyl citraconate, with DBU as base, allows the one pot formation of keto diesters. The reaction proceeds through an equilibrium form of the acceptor, followed by Michael addition of the nitroalkane and then, in situ Nef conversion.

8

PM3 semiempirical calculations by using the Gaussian 94W package showed that 9 is more stable than 6 by 2.0 kcal/mol. Gaussian 98 (Revision A.7): Frisch M. J., Trucks G. W., Schlegel H. B., Scuseria G. E., Robb M. A., Cheeseman J. R., Zakrzewski V. G., Montgomery J. A. Jr., Stratmann R. E., Burant J. C., Dapprich S., Millam J. M., Daniels A. D., Kudin K. N., Strain M. C., Farkas O., Tomasi J., Barone V., Cossi M., Cammi R., Mennucci B., Pomelli C., Adamo C., Clifford S., Ochterski J., Petersson G. A., Ayala P. Y., Cui Q., Morokuma K., Malick D. K., Rabuck A. D., Raghavachari K., Foresman J. B., Cioslowski J., Ortiz J. V., Baboul A. G., Stefanov B. B., Liu G., Liashenko A., Piskorz P., Komaromi I., Gomperts R., Martin R. L., Fox D. J., Keith T., Al-Laham M. A., Peng C. Y., Nanayakkara A., Gonzalez C., Challacombe M., Gill P. M. W., Johnson B., Chen W., Wong M. W., Andres J. L., Gonzalez C., Head-Gordon M., Replogle E. S., Pople J. A.; Gaussian 98 (Revision A.7); Gaussian, Inc.: Pittsburgh PA, 1998;

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Selected analytical data for the compounds 8h,i. 8h: IR: 3412, 1738 cm-1; 1H NMR (CDCl3): δ = 1.3-1.6 (m, 6 H), 2.42 (bt, 2 H, J = 7.0 Hz), 2.56 (dd, 1 H, J = 16.6 and 6.7 Hz), 2.62 (dd, 1 H, J = 17.7 and 6.1 Hz), 2.68 (dd, 1 H, J = 16.5 and 6.4 Hz), 2.91 (dd, 1 H, J = 18.0 and 7.0 Hz), 3.2-3.3 (m, 1 H), 3.6-3.7 (m, 2 H), 3.65 (s, 3 H), 3.66 (s, 3 H); 13C NMR (CDCl3): δ = 23.3, 25.2, 32.4, 35.1, 36.3, 42.7, 43.1, 51.9, 52.2, 62.5, 172.0, 174.1, 208.3; MS (EI, 70 eV)
m/z 278 (M+ + 4), 257, 243, 187, 170, 127 (100%), 69, 55, 41, 31. 8i: IR: 1741 cm-1; 1H NMR (CDCl3): δ = 2.14 (s, 3 H), 2.56 (dd, 1 H, J = 16.8 and 6.3 Hz), 2.6-2.8 (m, 6 H), 2.96 (dd, 1 H, J = 18.6 and 6.6 Hz), 3.2-3.3 (m, 1 H), 3.65 (s, 3 H), 3.66 (s, 3 H); 13C NMR (CDCl3): δ = 30.3, 35.5, 36.6, 36.8, 37.4, 43.6, 52.3, 52.7, 172.5, 174.5, 207.2, 207.4; MS (EI, 70 eV) m/z 259 (M+ + 1), 226, 187, 127, 99 (100%), 59, 43, 29.