Catalytic Reduction of Acetone by [(bpy)Rh]+: A Theoretical Mechanistic Investigation and Insight into Cooperativity Effects in This System
- 22 August 2003
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 125 (37) , 11430-11441
- https://doi.org/10.1021/ja028489e
Abstract
Lahav, Milstein, and co-workers reported that the complex [(bpy)Rh(hd)]+PF6- (bpy = substituted bipyridine ligand, hd = 1,5-hexadiene) shows catalytic activity in the hydrogenation of acetone (Töllner, K. et al. Science1997, 278, 2100). The activity in an ordered monolayer was found to be dramatically greater than in solution. We used the DFT functional mPW1K (Lynch, B. J. et al. J. Phys. Chem. A2000, 104, 4811) to investigate the mechanism of the homogenous reaction. The suitability of the mPW1K functional was verified by coupled cluster calculations on a model system. Bulk solvent effects were considered. Various alternative catalytic cycles were evaluated, and we found that one potential mechanism involves metal-catalyzed keto−enol tautomerization to form [(bpy)Rh(enol)]+ that adds hydrogen yielding a complex with axial and equatorial hydride ligands. The reaction continues via transfer of the hydrides to the enolic CC bond thereby forming 2-propanol and regenerating the catalyst. Another potential catalytic cycle involves formation of [(bpy)Rh(acetone)2(H)2]+, which has a spectator solvent ligand, and initial transfer of the equatorial hydride to the carbonyl carbon of acetone. Other mechanisms involving hydrogen transfer to the acetone tautomer involved higher barriers. With an eye toward modeling multi-center catalysis, various model systems for the bpy ligand were considered. It was found that diimine (HNCH−CHNH) compares very well with bpy, whereas cis-1,2-diiminoethylene (H2CN−CHCH−NCH2) yields a reaction profile very close to that of bpy. Finally, the system with two rhodium centers, [(diimine)Rh]22+, was investigated. The results strongly suggest that an enol-type catalytic cycle occurs and that cooperativity between the two metal centers is responsible for the acceleration of the reaction in the monolayer system.Keywords
This publication has 39 references indexed in Scilit:
- Mechanistic aspects of acetone addition to metalloaromatic complexes of iridium: a DFT investigationElectronic supplementary information (ESI) available: selected geometric data, calculated structures of all complexes and full computational details. See http://www.rsc.org/suppdata/cc/b2/b210622a/.Chemical Communications, 2002
- TpPtMe(H)2: Why Is There H/D Scrambling of the Methyl Group but Not Methane Loss?Journal of the American Chemical Society, 2002
- Benchmark ab Initio Energy Profiles for the Gas-Phase SN2 Reactions Y- + CH3X → CH3Y + X- (X,Y = F,Cl,Br). Validation of Hybrid DFT MethodsThe Journal of Physical Chemistry A, 2001
- A Simple Model for the Origin of Enantioselection and the Anti “Lock-and-Key” Motif in Asymmetric Hydrogenation of Enamides as Catalyzed by Chiral Diphosphine Complexes of Rh(I)Published by Wiley ,2000
- Comparative Density Functional Study of Associative and Dissociative Mechanisms in the Rhodium(I)-Catalyzed Olefin Hydroboration ReactionsOrganometallics, 2000
- Ru(arene)(amino alcohol)-Catalyzed Transfer Hydrogenation of Ketones: Mechanism and Origin of EnantioselectivityJournal of the American Chemical Society, 1999
- Atom-transfer within the coordination sphere of early–late heterobimetallic complexes: rapid deoxygenation of sulfoxides at low temperaturesChemical Communications, 1999
- Acid−Base Hydrolytic Chemistry Route to Thin Films Containing Terminal Donor Ligands and Organometallic Complexes for Heterogenization of Metal Complex CatalysisOrganometallics, 1998
- Exchange functionals with improved long-range behavior and adiabatic connection methods without adjustable parameters: The mPW and mPW1PW modelsThe Journal of Chemical Physics, 1998
- A full coupled-cluster singles and doubles model: The inclusion of disconnected triplesThe Journal of Chemical Physics, 1982