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[N,P]-pyrrole-phosphine ligand: An efficient and robust ligand for Ru-catalyzed transfer hydrogenation microwave-assisted reactions

A pyrrolyl-containing [N-P]-ligand (L1) and [Ru] were evaluated as catalytic system in transfer hydrogenation reaction of ketones. A comparison between microwave irradiation vs conventional heating conditions indicates that MW can be successfully used as energy source, improving the reaction time. T...

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Published in:Catalysis communications 2018-09, Vol.115, p.49-54
Main Authors: Sánchez-Rodríguez, E.P., Fragoso-Medina, A.J., Ramírez-Meneses, E., Gouygou, M., Ortega-Alfaro, M.C., López-Cortés, J.G.
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cited_by cdi_FETCH-LOGICAL-c377t-59f2e0b7293cf1a4172f88f21cb90288fdfe04e32942062ef19a833af51cb1203
cites cdi_FETCH-LOGICAL-c377t-59f2e0b7293cf1a4172f88f21cb90288fdfe04e32942062ef19a833af51cb1203
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container_title Catalysis communications
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creator Sánchez-Rodríguez, E.P.
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description A pyrrolyl-containing [N-P]-ligand (L1) and [Ru] were evaluated as catalytic system in transfer hydrogenation reaction of ketones. A comparison between microwave irradiation vs conventional heating conditions indicates that MW can be successfully used as energy source, improving the reaction time. The L1/Ru(II) proved to be an active, efficient and robust catalytic system. The scope of this catalytic system was evaluated using a diversity of substrates that include electron-withdrawing and electron-donor groups achieving a range of 65 to 95% conversion. Moreover, the catalytic system showed good activity even with highly sterically hindered ketones. [Display omitted] •Transfer catalytic hydrogenation microwave promoted.•The L1/Ru(II) proved to be an active, efficient and robust catalytic system.•High conversions were obtained with hindered substrates.
doi_str_mv 10.1016/j.catcom.2018.07.009
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subjects [N,P]-ligand
Chemical Sciences
Coordination chemistry
Microwave
Ruthenium
Transfer-hydrogenation
title [N,P]-pyrrole-phosphine ligand: An efficient and robust ligand for Ru-catalyzed transfer hydrogenation microwave-assisted reactions
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