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Reactions of Alkynes with [RuCl(cyclopentadienyl)] Complexes: The Important First Steps
Authors:Barnali Dutta  Basile F?E Curchod  Pablo Campomanes Dr  Euro Solari Dr  Rosario Scopelliti Dr  Ursula Rothlisberger Prof  Kay Severin Prof
Institution:Institut des Sciences et Ingénierie Chimiques, école Polytechnique Fédérale de Lausanne (EPFL), 1015 Lausanne (Switzerland), Fax: (+41)?21‐693‐9305
Abstract:Cyclopentadienyl–ruthenium half‐sandwich complexes with η2‐bound alkyne ligands have been suggested as catalytic intermediates in the early stages of Ru‐catalyzed reactions with alkynes. We show that electronically unsaturated complexes of the formula RuCl(Cp^)(η2‐RC≡CR′)] can be stabilized and crystallized by using the sterically demanding cyclopentadienyl ligand Cp^ (Cp^=η5‐1‐methoxy‐2,4‐tert‐butyl‐3‐neopentyl‐cyclopentadienyl). Furthermore we demonstrate that RuCl2(Cp^)]2 is an active and regioselective catalyst for the 2+2+2] cyclotrimerization of alkynes. The first elementary steps of the reaction of mono(η2‐alkyne) complexes containing {RuCl(Cp*)} (Cp*=η5‐C5Me5) and {RuCl(Cp^)} fragments with alkynes were investigated by DFT calculations at the M06/6‐31G* level in combination with a continuum solvent model. Theoretical results are able to rationalize and complement the experimental findings. The presence of the sterically demanding Cp^ ligand increases the activation energy required for the formation of the corresponding di(η2‐alkyne) complexes, enhancing the initial regioselectivity, but avoiding the evolution of the system towards the expected cyclotrimerization product when bulky substituents are present. Theoretical results also show that the electronic structure and stability of a metallacyclic intermediate is strongly dependent on the nature of the substituents present in the alkyne.
Keywords:alkynes  cyclotrimerization  density functional calculations  organometallic chemistry  ruthenium
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