Issue 10, 2001

Molybdenum(0) and tungsten(0) catalysts with enhanced reactivity for allylic substitution: regioselectivity and solvent effects

Abstract

The binuclear Mo(II) and W(II) complexes 28a,b and 29a,b have been developed as pre-catalysts for allylic substitution with β-dicarbonyl nucleophiles. These complexes are reduced in situ to Mo(0) and W(0) catalytic species 30a,b and 31a,b by excess of NaH, employed to generate sodiomalonate nucleophiles, or by DIBAL-H. 1,3-Dioxolane and 1,4-dioxane, when used as solvents, substantially accelerate the reaction. These new catalysts exhibit “traditional” Mo regiochemistry, i.e., the nucleophilic attack occurring preferentially at the more substituted carbon (5 → 9; 37 → 38), unless an additional factor, such as further coordination to another moiety of the allylic electrophile takes part (41), as in the case of the geranyl-type substrates (32 or 33 → 36).

Graphical abstract: Molybdenum(0) and tungsten(0) catalysts with enhanced reactivity for allylic substitution: regioselectivity and solvent effects [ ]

Supplementary files

Article information

Article type
Paper
Submitted
24 Jan 2001
Accepted
19 Mar 2001
First published
26 Apr 2001

J. Chem. Soc., Perkin Trans. 1, 2001, 1234-1240

Molybdenum(0) and tungsten(0) catalysts with enhanced reactivity for allylic substitution: regioselectivity and solvent effects

A. V. Malkov, I. R. Baxendale, D. J. Mansfield and P. Kočovský, J. Chem. Soc., Perkin Trans. 1, 2001, 1234 DOI: 10.1039/B100903F

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