Well-defined silica-supported calcium reagents: control of Schlenk equilibrium by grafting.

Chemistry

Unité de Catalyse et de Chimie du Solide UMR CNRS 8181, Ecole Nationale Supérieure de Chimie, BP 90108, 59 652 Villeneuve d'Ascq Cedex, France.

Published: June 2009

Calcium reagents Ca(alpha-Me(3)Si-2-Me(2)N-benzyl)(2) x 2 thf (1) and Ca[N(SiMe(3))(2)](2) x 2 thf (2) reacted with silica partially dehydroxylated at 700 degrees C to afford materials that bear ([triple bond]SiO)Ca(alpha-Me(3)Si-2-Me(2)N-benzyl) x 1.6 thf (SiO(2)-1) and ([triple bond]SiO)Ca [N(SiMe(3))(2)] x 1.3 thf (SiO(2)-2) fragments, respectively. Due to the bulk of the supported complexes, the silanol groups are only partially metalated: 50% in SiO(2)-1 and 70% in SiO(2)-2. In the case of SiO(2)-2, a parallel SiMe(3)-capping side reaction affords in fine a silanol-free surface. The materials were characterized by IR spectroscopy, 1D and 2D solid-state high-field NMR spectroscopy, and elemental analysis. Reaction of 2 with one equivalent of the bulky silanol (tBuO)(3)SiOH, a silica-surface mimic, afforded the homoleptic bis-silyloxide calcium derivative through ligand exchange (Schlenk equilibrium), and a derivative was isolated and structurally characterized. Preliminary studies have shown that both grafted benzyl and amide derivatives are active in olefin hydrosilylation, intramolecular hydroamination, and styrene polymerization, with evidence showing that catalysis occurs through supported species. In styrene polymerization, a marked influence of the surface acting as a ligand on the stereoselectivity of the reaction was observed, as syndiotactic-rich polystyrene (88% of r diads) was obtained. These results illustrate that grafting of calcium benzyl or amide compounds on a silica surface is a new concept to prevent ligand exchange through the Schlenk equilibrium. Heteroleptic calcium complexes that cannot be synthesized as stable molecular species in solution can be obtained as silica-supported species which have been shown to be catalytically active.

Download full-text PDF

Source
http://dx.doi.org/10.1002/chem.200802512DOI Listing

Publication Analysis

Top Keywords

schlenk equilibrium
12
calcium reagents
8
grafting calcium
8
ligand exchange
8
exchange schlenk
8
benzyl amide
8
styrene polymerization
8
calcium
5
well-defined silica-supported
4
silica-supported calcium
4

Similar Publications

Methyl magnesium bromide is a precatalyst for the dehydrocoupling of silanes and amines to produce aminosilane products under mild conditions. As a commercially available Grignard reagent, this precatalyst represents a simplification over previous magnesium-containing catalysts for Si-N bond formation while displaying similar activity to other magnesium-based catalysts. This observation is consistent with the hypothesis that competitive Schlenk equilibrium can be addressed by not using an ancillary ligand.

View Article and Find Full Text PDF

The addition of Grignard reagents to ketones is a well-established textbook reaction. However, a comprehensive understanding of its mechanism has only recently begun to emerge. X-ray spectroscopy, because of its high selectivity and sensitivity, is the ideal tool for distinguishing between an ensemble of competing pathways.

View Article and Find Full Text PDF

The reaction of homoleptic beryllium halide with diphenyl beryllium complexes leads to the clean formation of heteroleptic beryllium Grignard compounds [(L) BePhX] (X=Cl, Br, I; L=C-, N-, O-donor ligand). The influence of ligands and solvent on these compounds, their formation and exchange equilibria in solution were investigated, together with the factors determining the complex constitution.

View Article and Find Full Text PDF

Schlenk-Type Equilibria of Grignard-Analogous Arylberyllium Complexes: Steric Effects.

Chemistry

October 2023

School of Chemistry, Monash University, PO Box 23, Melbourne, VIC, 3800, Australia.

The presence of complex Schlenk equilibria is a central property of synthetically invaluable Grignard reagents substantially affecting their reactivity and selectivity in chemical transformations. In this work, the steric effects of aryl substituents on the Schlenk-type equilibria of their lighter congeners, arylberyllium bromides, are systematically studied. Combination of diarylberyllium complexes Ar Be(OEt ) (1Ar, Ar=Tip, Tcpp; Tip=2,4,6-iPr C H , Tcpp=2,4,6-Cyp C H , Cyp=c-C H ), containing sterically demanding aryl groups, and BeBr (OEt ) (2) affords the Grignard-analogous arylberyllium bromides ArBeBr(OEt ) (3Ar, Ar=Tip, Tcpp).

View Article and Find Full Text PDF

Morphological Plasticity of LiCl Clusters Interacting with Grignard Reagent in Tetrahydrofuran.

J Am Chem Soc

August 2023

Department of Chemistry and Hylleraas Centre for Quantum Molecular Sciences, University of Oslo, P.O. Box 1033 Blindern, 0315 Oslo, Norway.

Ab initio molecular dynamics simulations are used to explore tetrahydrofuran (THF) solutions containing pure LiCl and LiCl with CHMgCl, as model constituents of the turbo Grignard reagent. LiCl aggregates as LiCl, which preferentially assumes compact cubane-like conformations. In particular, an open-edge pseudotetrahedral frame is promoted by solvent-assisted Li-Cl bond cleavage.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!