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Addition of Re-Bonded Nucleophilic Ligands to Activated Alkynes: A Theoretical Rationalization

Autores

ALVAREZ LORENZO, DANIEL, Diaz, Jesus , Isabel Menendez, M. , Lopez, Ramon

Publicación externa

No

Medio

Eur. J. Inorg. Chem.

Alcance

Article

Naturaleza

Científica

Cuartil JCR

Cuartil SJR

Impacto JCR

2.524

Impacto SJR

0.667

Fecha de publicacion

23/01/2020

ISI

000506127400001

Abstract

Reactions between [Re(X)(CO)(3)(bipy)] (X = OH, OMe, NHpTol, PPh2; bipy = 2,2 '-bipyridine) complexes and methyl propiolate (HMAD) are studied to rationalize the different products experimentally obtained. Three reaction patterns were found with a common and limiting initial attack of X to HMAD. Thus, the experimental selectivity depends on the kinetics and/or thermodynamics of the last reaction stages. For X = OH and NHpTol an easy intramolecular attack of the X-linked HMAD to a highly electrophilic CO ligand is followed by a hydrogen transposition to this CO, yielding very stable species (C-C-COH products). When X = OMe, the insertion of the X-attached HMAD into the Re-OMe bond (ins product) takes place due to the smallest barrier and the largest stability of the ins route. Finally, when X = PPh2 the ins route becomes restricted and the route for the coupling of the X-attached HMAD with bipy (C-C-bipy product) wins over the one for the coupling with CO (C-C-CO product) only due to the larger stability of the C-C-bipy product.

Palabras clave

Rhenium; Nucleophilic addition; Ligand effects; Reaction mechanisms; Computational chemistry

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