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Rhodium‐Catalyzed Dehydrogenative Silylation of Acetophenone Derivatives: Formation of Silyl Enol Ethers versus Silyl Ethers
Authors:Dr Karin Garcés  Dr Ralte Lalrempuia  Dr Víctor Polo  Dr Francisco J Fernández‐Alvarez  Dr Pilar García‐Orduña  Prof Fernando J Lahoz  Prof Jesús J Pérez‐Torrente  Prof Luis A Oro
Institution:1. Universidad de Zaragoza, CSIC, Departamento de Química Inorgánica, Instituto de Síntesis Química y Catálisis Homogénea, ISQCH), Facultad de Ciencias, Zaragoza, Spain;2. Departamento de Química Física, Instituto de Biocomputación y Física de Sistemas complejos, BIFI), Universidad de Zaragoza, Facultad de Ciencias, Zaragoza, Spain;3. Center of Research Excellence in Petroleum Refining and Petrochemicals, King Fahd University of Petroleum and Minerals, Dhahran, Saudi Arabia
Abstract:A series of rhodium–NSiN complexes (NSiN=bis (pyridine‐2‐yloxy)methylsilyl fac‐coordinated) is reported, including the solid‐state structures of Rh(H)(Cl)(NSiN)(PCy3)] (Cy=cyclohexane) and Rh(H)(CF3SO3)(NSiN)(coe)] (coe=cis‐cyclooctene). The Rh(H)(CF3SO3)(NSiN)(coe)]‐catalyzed reaction of acetophenone with silanes performed in an open system was studied. Interestingly, in most of the cases the formation of the corresponding silyl enol ether as major reaction product was observed. However, when the catalytic reactions were performed in closed systems, formation of the corresponding silyl ether was favored. Moreover, theoretical calculations on the reaction of Rh(H)(CF3SO3)(NSiN)(coe)] with HSiMe3 and acetophenone showed that formation of the silyl enol ether is kinetically favored, while the silyl ether is the thermodynamic product. The dehydrogenative silylation entails heterolytic cleavage of the Si?H bond by a metal–ligand cooperative mechanism as the rate‐determining step. Silyl transfer from a coordinated trimethylsilyltriflate molecule to the acetophenone followed by proton transfer from the activated acetophenone to the hydride ligand results in the formation of H2 and the corresponding silyl enol ether.
Keywords:dehydrogenative silylation  hydrogenation  hydrosilylation  NSiN ligands  rhodium  silyl enol ethers
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