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Hydrogen-transfer catalysis with Cp*Ir<sup>III</sup> complexes:The influence of the ancillary ligands
Authors
Abura T.
Allen L. J.
+60 more
Alonso F.
Alonso F.
Arita S.
Ball R. G.
Berliner M. A.
Brewster T. P.
Bullock R. M.
Campos J.
Camus A.
Corberán R.
Crabtree R. H.
Cross W. B.
Dobereiner G. E.
Dröge T.
Foley P.
Fonseca G. S.
Fujita K.-i.
Gilbert T. M.
Glueck D. S.
Gnanamgari D.
Guillena G.
Haddad Y. M. Y.
Hammond C.
Hanasaka F.
Henbest H. B.
Hintermair U.
Hu Y.
Ikariya T.
Johnstone R. A. W.
Kantam M. L.
Li L.
Miecznikowski J. R.
Murata K.
Nixon T. D.
O W. W. N.
Ouali A.
Palmer M. J.
Pannetier N.
Parent A. R.
Polshettiwar V.
Pons V.
Pàmies O.
Robertson A.
Saidi O.
Samec J. S. M.
Sonnenberg J. F.
Su F.-Z.
Subramanian T.
Suzuki T.
Toubiana J.
Trocha-Grimshaw J.
Verho O.
Vogt M.
Watson A. J. A.
Widegren J. A.
Wilkes J. S.
Xiao X.-Q.
Zassinovich G.
Ziessel R.
Ziessel R.
Publication date
3 January 2014
Publisher
'American Chemical Society (ACS)'
Doi
Abstract
Fourteen Cp*IrIII complexes, bearing various combinations of N- and C-spectator ligands, are assayed in hydrogen-transfer catalysis from isopropyl alcohol to acetophenone under various conditions to investigate ligand effects in this widely used reaction. The new cationic complexes bearing monodentate pyridine and N-heterocyclic carbene (NHC) ligands were characterized crystallographically and by variable-temperature nuclear magnetic resonance (VT-NMR). Control experiments and mercury poisoning tests showed that iridium(0) nanoparticles, although active in the reaction, are not responsible for the high activity observed for the most active precatalyst [Cp*Ir(IMe) 2Cl]BF4 (6). For efficient catalysis, it was found necessary to have both NHCs in monodentate form; tying them together in a bis-NHC chelate ligand gave greatly reduced activity. The kinetics of the base-assisted reaction showed induction periods as well as deactivation processes, and H/D scrambling experiments cast some doubt on the classical monohydride mechanism. © 2013 American Chemical Society
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info:doi/10.1021%2Fcs400834q
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