Article
Mechanistic Investigations on Hydrogenation, Isomerization and Hydrosilylation Reactions Mediated by a Germyl-Rhodium System
Author/s | Bajo Velázquez, Sonia
Theulier, Cyril A. Campos, Jesús |
Department | Universidad de Sevilla. Departamento de Química Inorgánica |
Publication Date | 2022 |
Deposit Date | 2024-08-29 |
Published in |
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Abstract | We recently disclosed a dehydrogenative double C−H bond activation reaction in the unusual pincer-type rhodium-germyl complex [(ArMes)2ClGeRh] (ArMes=C6H3-2,6-(C6H2-2,4,6-Me3)2). Herein we investigate the catalytic ... We recently disclosed a dehydrogenative double C−H bond activation reaction in the unusual pincer-type rhodium-germyl complex [(ArMes)2ClGeRh] (ArMes=C6H3-2,6-(C6H2-2,4,6-Me3)2). Herein we investigate the catalytic applications of this Rh/Ge system in several transformations, namely trans-semihydrogenation of internal alkynes, trans-isomerization of olefins and hydrosilylation of alkynes. We have compared the activity and selectivity of this catalyst against other common rhodium precursors, as well as related sterically hindered rhodium complexes, being the one with the germyl fragment superior in terms of selectivity towards E-isomers. To increase this selectivity, a tandem catalytic protocol that incorporates the use of a heterogeneous catalyst for the trans-semihydrogenation of internal alkynes has been devised. Kinetic mechanistic investigations provide important information regarding the individual catalytic cycles that comprise the overall trans-semihydrogenation of internal alkynes. |
Funding agencies | European Research Council (ERC) Junta de Andalucía European Commission (EC) |
Project ID. | 756575
P18-FR-4688 101023461 |
Citation | Bajo Velázquez, S., Theulier, C.A. y Campos, J. (2022). Mechanistic Investigations on Hydrogenation, Isomerization and Hydrosilylation Reactions Mediated by a Germyl-Rhodium System. ChemCatChem, 14 (15), e202200157. https://doi.org/10.1002/cctc.202200157. |
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