On the Viability of Carbonyl Hydroboration Catalysed by Aluminium Hydrides
Abstract
Abstract The hydroboration of aldehydes and ketones by pinacolborane (HBpin) catalysed by (Nacnac) Dipp Al(OTf)H ((Nacnac) Dipp = HC(MeCDippN) 2 ; Dipp = C 6 H 3 i Pr 2 ‐2,6; Tf = SO 2 CF 3 ) was first reported in 2015. This study represented a landmark in main group catalysis, and advanced a widely‐accepted and oft‐cited mechanistic paradigm. However, in contradiction of that study, we show here that: i) the mechanism proposed, involving turnover via Al─O/B─H metathesis at the intermediate (Nacnac) Dipp Al(OTf)(OCH 2 Ph), does not occur; ii) when using pre‐purified HBpin, the hydroboration reaction with acetophenone ‘catalysed’ by (Nacnac) Dipp Al(OTf)H (reportedly giving 51% conversion over 6 h at 2 mol% loading), actually shows no conversion; and iii) the active species in catalysis is a BH 3 adduct derived either from the use of impure HBpin, or from the degradation of HBpin by the action of aluminium species present in the reaction mixture. More broadly, our study i) calls into question the nature of the true catalyst species in reports of carbonyl hydroboration by aluminium complexes (since Al─O/B─H metathesis proceeds spontaneously in the reverse direction to that necessitated catalytically); and ii) presents further evidence that the hydroboration of benzaldehyde by HBpin is not a good catalytic probe, given the significant rate of the uncatalysed background reaction.
Article Details
Authors (9)
Alexa Caise
Inorganic Chemistry Laboratory Department of Chemistry University of Oxford South Parks Road Oxford OX1 3QR UK
Barnabé Berger
Department of Chemistry and Applied Biosciences
Aidan Murray
Eugene Kolychev
Inorganic Chemistry Laboratory Department of Chemistry University of Oxford South Parks Road Oxford OX1 3QR UK
Jamie Hicks
Research School of Chemistry Australian National University Acton ACT 2601 Australia
M. Ángeles Fuentes
Department of Chemistry and Center for Research in Sustainable Chemistry (CIQSO) University of Huelva Huelva 21007 Spain
Job J. C. Struijs
Department of Chemistry, Chemistry Research Laboratory
Jose M. Goicoechea
Department of Chemistry, Indiana University, 800 East Kirkwood Avenue, Bloomington, Indiana 47405, United States
Simon Aldridge
Inorganic Chemistry Laboratory, Department of Chemistry, University of Oxford, South Parks Road, Oxford OX1 3QR, U.K.