Abstract
A novel sapphyrin derivative was obtained from the reaction between a free-base sapphyrin and dimethyl acetylenedicarboxylate (DMAD). The formation of the new compound involved a double aza-Michael addition of two pyrrolic NH groups to a DMAD molecule, with the formation of a disubstituted ethano bridge. The NMR spectral data reveal a product with an unsymmetrical structure; DFT calculations provided support for a structure in which the ethano bridge links two adjacent pyrrole units. The present study provides a seemingly unprecedented example of an N,N′-dinucleophile reacting with DMAD to form a heterocyclic compound in which the two N-atoms are linked to the two sp3carbon atoms derived from a substituted acetylene.
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Figueira, F., Marques, I., Farinha, A. S. F., Tomé, A. C., Cavaleiro, J. A. S., Silva, A. M. S., … Tomé, J. P. C. (2016). Unprecedented Double aza-Michael Addition within a Sapphyrin Core. Chemistry - A European Journal, 22(40), 14349–14355. https://doi.org/10.1002/chem.201602313
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