Rhodacarborane complexes with a triphenylphosphonium substituent as efficient catalysts for on-water transfer hydrogenation of carbonyl compounds

Abstract

Two isomeric rhodacarborane chloride complexes [1,8-Bn2-2,2-Cl2-X-PPh3-2,1,8-closo-RhC2B9H8]2 (X=7 and 11) were synthesized. One of them (X=7) exhibits high catalytic activity in the on-water reduction of aromatic and aliphatic aldehydes and ketones with ammonium formate to corresponding alcohols at a 0.2 mol% loading. The enantiopure form of a planar chiral catalyst was obtained via isolation of cyclometallated complex with (S)-proline. The enantiopure form of catalyst affords alcohols with enantiomeric excess when prochiral ketones are used in the reaction. The same catalyst is active in Oppenauer-type oxidation of (±)-1-phenylethanol with acetone in the presence of K2CO3. The transfer hydrogenation is accompanied by in situ reversible cyclometallation of the catalytic species engaging the ortho-CH bonds of PPh3.

Supplementary files

Article information

Article type
Paper
Accepted
03 May 2026
First published
07 May 2026

Dalton Trans., 2026, Accepted Manuscript

Rhodacarborane complexes with a triphenylphosphonium substituent as efficient catalysts for on-water transfer hydrogenation of carbonyl compounds

M. M. Vinogradov, Y. V. Nelubina, I. A. Godovikov, M. I. Godovikova, V. B. Kharitonov, E. S. Podyacheva and A. Rodionov, Dalton Trans., 2026, Accepted Manuscript , DOI: 10.1039/D6DT00999A

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