Literature DB >> 16636698

Zirconium-mediated metathesis of imines: a study of the scope, longevity, and mechanism of a complicated catalytic system.

R L Zuckerman1, S W Krska, R G Bergman.   

Abstract

By kinetically stabilizing imidozirconocene complexes through the use of a sterically demanding ligand, or by generating a more thermodynamically stable resting state with addition of diphenylacetylene, we have developed transition metal-catalyzed imine metathesis reactions that are mechanistically analogous to olefin metathesis reactions catalyzed by metal carbene complexes. When 5 mol % of Cp*Cp(THF)Zr=N(t)Bu is used as the catalyst precursor in the metathesis reaction between PhCH=NPh and p-TolCH=N-p-Tol, a 1:1:1:1 equilibrium mixture with the two mixed imines p-TolCH=NPh and PhCH=N-p-Tol is generated in C(6)D(6) at 105 degrees C. The catalyst was still active after 20 days with an estimated 847 turnovers (t(1/2) 170 m; TON = 1.77 h(-1)). When the azametallacyclobutene Cp(2)Zr(N(Tol)C(Ph)=C(Ph)) is used as the catalyst precursor under similar reaction conditions, a total of 410 turnovers are obtained after 4 days (t(1/2) 170 m; TON = 4.3 h(-1)). An extensive kinetic and equilibrium analysis of the metallacyclobutene-catalyzed metathesis of PhCH=N-p-Tol and p-F-C(6)H(4)CH=N-p-F-C(6)H(4) was carried out by monitoring the concentrations of imines and observable metal-containing intermediates over time. Numerical integration methods were used to fit these data to a detailed mechanism involving coordinatively unsaturated (16-electron) imido complexes as critical intermediates. Examination of the scope of reaction between different organic imines revealed characteristic selectivity that appears to be unique to the zirconium-mediated system. Several zirconocene complexes that could generate the catalytically active "CpCp'Zr=NAr" (Cp' = Cp or Cp*) species in situ were found to be effective agents in the metathetical exchange between different N-aryl imines. N-Alkyl aldimines were found to be completely unreactive toward metathesis with N-aryl aldimines, and metathesis reactions involving the two N-alkyl imines TolCH=NPr and PhCH=NMe gave slow or erratic results, depending on the catalyst used. Metathesis was observed between N-aryl ketimines and N-aryl aldimines, but for N-aryl ketimine substrates, the catalyst resting state consists of zirconocene enamido complexes, generated by the formal C-H activation of the alpha position of the ketimine substrates.

Entities:  

Year:  2000        PMID: 16636698      PMCID: PMC1447529          DOI: 10.1021/ja992869r

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  1 in total

1.  Electronic Structure of Luminescent d(0) Niobium and Tantalum Imido Compounds cis,mer-M(NR)Cl(3)L(2).

Authors:  Darryl S. Williams; Andrey V. Korolev
Journal:  Inorg Chem       Date:  1998-07-27       Impact factor: 5.165

  1 in total
  9 in total

1.  Mechanistic Investigation of Cycloreversion/Cycloaddition Reactions between Zirconocene Metallacycle Complexes and Unsaturated Organic Substrates.

Authors:  Rebecca L Zuckerman; Robert G Bergman
Journal:  Organometallics       Date:  2001-04-30       Impact factor: 3.876

2.  Kinetic control and multiple mechanisms for C-H bond activation by a Zr=N complex.

Authors:  Helen M Hoyt; Robert G Bergman
Journal:  Angew Chem Int Ed Engl       Date:  2007       Impact factor: 15.336

3.  Synthesis of Pyridylimido Complexes of Tantalum and Niobium by Reductive Cleavage of the N═N Bond of 2,2'-Azopyridine: Precursors for Early-Late Heterobimetallic Complexes.

Authors:  Kento Kawakita; Yuya Kakiuchi; Evan P Beaumier; Ian A Tonks; Hayato Tsurugi; Kazushi Mashima
Journal:  Inorg Chem       Date:  2019-09-25       Impact factor: 5.165

4.  Neutral and Cationic Alkyl Tantalum Imido Complexes: Synthesis and Migratory Insertion Reactions.

Authors:  Laura L Anderson; Joseph A R Schmidt; John Arnold; Robert G Bergman
Journal:  Organometallics       Date:  2006-07-03       Impact factor: 3.876

5.  Reactivity of terminal imido complexes of group 4-6 metals: stoichiometric and catalytic reactions involving cycloaddition with unsaturated organic molecules.

Authors:  Kento Kawakita; Yuya Kakiuchi; Hayato Tsurugi; Kazushi Mashima; Bernard F Parker; John Arnold; Ian A Tonks
Journal:  Coord Chem Rev       Date:  2020-01-14       Impact factor: 22.315

6.  Mechanism of Ti-Catalyzed Oxidative Nitrene Transfer in [2 + 2 + 1] Pyrrole Synthesis from Alkynes and Azobenzene.

Authors:  Zachary W Davis-Gilbert; Xuelan Wen; Jason D Goodpaster; Ian A Tonks
Journal:  J Am Chem Soc       Date:  2018-05-31       Impact factor: 15.419

7.  (tert-Butyl-imido)bis-(η-cyclo-penta-dien-yl)pyridine-zirconium(IV).

Authors:  Katharina Kaleta; Perdita Arndt; Anke Spannenberg; Uwe Rosenthal
Journal:  Acta Crystallogr Sect E Struct Rep Online       Date:  2010-08-28

Review 8.  Recent Advances in Zirconium-89 Chelator Development.

Authors:  Nikunj B Bhatt; Darpan N Pandya; Thaddeus J Wadas
Journal:  Molecules       Date:  2018-03-12       Impact factor: 4.411

9.  1,2-Addition and cycloaddition reactions of niobium bis(imido) and oxo imido complexes.

Authors:  Jade I Fostvedt; Lauren N Grant; Benjamin M Kriegel; Andreas H Obenhuber; Trevor D Lohrey; Robert G Bergman; John Arnold
Journal:  Chem Sci       Date:  2020-10-09       Impact factor: 9.825

  9 in total

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