β-H Transfer from the Metallacyclobutane: A Key Step in the Deactivation and Byproduct Formation for the Well-Defined Silica-Supported Rhenium Alkylidene Alkene Metathesis Catalyst
- 11 April 2008
- journal article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 130 (19) , 6288-6297
- https://doi.org/10.1021/ja800189a
Abstract
The surface complex [([triple bond]SiO)Re([triple bond]CtBu)(=CHtBu)(CH2tBu)] (1) is a highly efficient propene metathesis catalyst with high initial activities and a good productivity. However, it undergoes a fast deactivation process with time on stream, which is first order in active sites and ethene. Noteworthy, 1-butene and pentenes, unexpected products in the metathesis of propene, are formed as primary products, in large amount relative to Re (>>1 equiv/Re), showing that their formation is not associated with the formation of inactive species. DFT calculations on molecular model systems show that byproduct formation and deactivation start by a beta-H transfer trans to the weak sigma-donor ligand (siloxy) at the metallacyclobutane intermediate having a square-based pyramid geometry. This key step has an energy barrier slightly higher than that calculated for olefin metathesis. After beta-H transfer, the most accessible pathway is the insertion of ethene in the Re-H bond. The resulting pentacoordinated trisperhydrocarbyl complex rearranges via either (1) alpha-H abstraction yielding the unexpected 1-butene byproduct and the regeneration of the catalyst or (2) beta-H abstraction leading to degrafting. These deactivation and byproduct formation pathways are in full agreement with the experimental data.Keywords
This publication has 41 references indexed in Scilit:
- Rhenium(VII) Oxide/Aluminum Oxide: More Experimental Evidence for an Oxametallacyclobutane Intermediate and a Pseudo‐Wittig Initiation Step in Olefin MetathesisAdvanced Synthesis & Catalysis, 2007
- Computational Study of Low-Coordinate Rhenium Diolates, Metallaoxetanes, Oxo Complexes, and CarbenesOrganometallics, 2004
- Mass Spectrometric Study of the Conversion of Rhenium Diolates to Metallaoxetanes and Carbenes. Coordination Number, Polar, and Steric EffectsOrganometallics, 2004
- Industrial applications of olefin metathesisJournal of Molecular Catalysis A: Chemical, 2004
- Catalytic Metathesis of Unsaturated Fatty Acid Esters and OilsTopics in Catalysis, 2004
- Molybdenum and Tungsten Imido Alkylidene Complexes as Efficient Olefin‐Metathesis CatalystsAngewandte Chemie International Edition in English, 2003
- Metallaoxetanes and Carbenes from Diolates in High-Valent Rhenium Oxo Chemistry: The Importance of the Coordination NumberAngewandte Chemie International Edition in English, 2003
- Perhydrocarbyl ReVII Complexes: Comparison of Molecular and Surface ComplexesJournal of the American Chemical Society, 2002
- A Highly Active Well-Defined Rhenium Heterogeneous Catalyst for Olefin Metathesis Prepared via Surface Organometallic ChemistryJournal of the American Chemical Society, 2001
- The Development of L2X2RuCHR Olefin Metathesis Catalysts: An Organometallic Success StoryAccounts of Chemical Research, 2000