Literature DB >> 16534824

Mechanistic investigations of imine hydrogenation catalyzed by dinuclear iridium complexes.

Marta Martín1, Eduardo Sola, Santiago Tejero, José A López, Luis A Oro.   

Abstract

Treatment of [Ir2(mu-H)(mu-Pz)2H3(NCMe)(PiPr3)2] (1) with one equivalent of HBF4 or [PhNH=CHPh]BF4 affords efficient catalysts for the homogeneous hydrogenation of N-benzylideneaniline. The reaction of 1 with HBF4 leads to the trihydride-dihydrogen complex [Ir2(mu-H)(mu-Pz)2H2(eta2-H2)(NCMe)(PiPr3)2]BF4 (2), which has been characterized by NMR spectroscopy and DFT calculations on a model complex. Complex 2 reacts with imines such as tBuN=CHPh or PhN=CHPh to afford amine complexes [Ir2(mu-H)(mu-Pz)2H2(NCMe){L}(PiPr3)2]BF4 (L = NH(tBu)CH2Ph, 3; NH(Ph)CH2Ph, 4) through a sequence of proton- and hydride-transfer steps. Dihydrogen partially displaces the amine ligand of 4 to form 2; this complements a possible catalytic cycle for the N-benzylideneaniline hydrogenation in which the amine-by-dihydrogen substitution is the turnover-determining step. The rates of ligand substitution in 4 and its analogues with labile ligands other than amine are dependent upon the nature of the leaving ligand and independent on the incoming ligand concentration, in agreement with dissociative substitutions. Water complex [Ir2(mu-H)(mu-Pz)2H2(NCMe)(OH2)(PiPr3)2]BF4 (7) hydrolyzes N-benzylideneaniline, which eventually affords the poor hydrogenation catalyst [Ir2(mu-H)(mu-Pz)2H2(NCMe)(NH2Ph)(PiPr3)2]BF4 (11). The rate law for the catalytic hydrogenation in 1,2-dichloroethane with complex [Ir2(mu-H)(mu-Pz)2H2(OSO2CF3)(NCMe)(PiPr3)2] (8) as catalyst precursor is rate = k[8]{p(H2)}; this is in agreement with the catalytic cycle deduced from the stochiometric experiments. The hydrogenation reaction takes place at a single iridium center of the dinuclear catalyst, although ligand modifications at the neighboring iridium center provoke changes in the hydrogenation rate. Even though this catalyst system is also capable of effectively hydrogenating alkenes, N-benzylideneaniline can be selectively hydrogenated in the presence of simple alkenes.

Entities:  

Year:  2006        PMID: 16534824     DOI: 10.1002/chem.200501231

Source DB:  PubMed          Journal:  Chemistry        ISSN: 0947-6539            Impact factor:   5.236


  1 in total

1.  Sequential C-H Arylation and Enantioselective Hydrogenation Enables Ideal Asymmetric Entry to the Indenopiperidine Core of an 11β-HSD-1 Inhibitor.

Authors:  Xudong Wei; Bo Qu; Xingzhong Zeng; Jolaine Savoie; Keith R Fandrick; Jean-Nicolas Desrosiers; Sergei Tcyrulnikov; Maurice A Marsini; Frederic G Buono; Zhibin Li; Bing-Shiou Yang; Wenjun Tang; Nizar Haddad; Osvaldo Gutierrez; Jun Wang; Heewon Lee; Shengli Ma; Scot Campbell; Jon C Lorenz; Matthias Eckhardt; Frank Himmelsbach; Stefan Peters; Nitinchandra D Patel; Zhulin Tan; Nathan K Yee; Jinhua J Song; Frank Roschangar; Marisa C Kozlowski; Chris H Senanayake
Journal:  J Am Chem Soc       Date:  2016-11-17       Impact factor: 15.419

  1 in total

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