Issue 47, 2015

Direct substitution of benzylic alcohols with electron-deficient benzenethiols via π-benzylpalladium(ii) in water

Abstract

An efficient and environmentally benign method for the direct nucleophilic substitution of benzylic alcohols with electron-deficient benzenethiols in water is developed. π-Benzylpalladium(II) cation complexes show high catalytic activity for S-benzylation, which provides a mechanistic alternative to the borrowing hydrogen methodology. Hammett studies on the rate constants of S-benzylation by various substituted alcohols show good correlation between log(kX/kH) and the σ value of the respective substituents. From the slope, negative ρ values are obtained, suggesting that there is a build-up of positive charge in the transition state. Water plays an important role in the catalytic system for sp3 C–O bond activation and stabilization of the activated Pd(II) cation species.

Graphical abstract: Direct substitution of benzylic alcohols with electron-deficient benzenethiols via π-benzylpalladium(ii) in water

Supplementary files

Article information

Article type
Paper
Submitted
15 Aug 2015
Accepted
30 Sep 2015
First published
01 Oct 2015

Org. Biomol. Chem., 2015,13, 11459-11465

Direct substitution of benzylic alcohols with electron-deficient benzenethiols via π-benzylpalladium(II) in water

H. Hikawa, M. Toyomoto, S. Kikkawa and I. Azumaya, Org. Biomol. Chem., 2015, 13, 11459 DOI: 10.1039/C5OB01717C

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