| Literature DB >> 27559381 |
Philipp Veit1, Christoph Förster1, Katja Heinze1.
Abstract
(Aminoferrocenyl)(ferrocenyl)carbene(pentacarbonyl)tungsten(0)Entities:
Keywords: carbene complexes; ferrocene; imine; mechanism; tungsten
Year: 2016 PMID: 27559381 PMCID: PMC4979739 DOI: 10.3762/bjoc.12.125
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Imine formation and isomerization reactions from NH carbene complexes Cr(CO)(-2) (a) [27], Cr(CO)(/-4) (b) [44], Cr(CO)(-6) (c) [42], M(CO)(-8) (d) [45–46], M(CO)(10) (e) [50–52] and during Si–O cleavage in the isonitrile complex W(CO)(1,2-CN-CH-OSiMe) (f) [53].
Scheme 2Synthesis of W(CO)(-2) from W(CO)(1) [20–21] and aminoferrocene [40–41] with concomitant formation of E-1,2-diferrocenylimine -3 [43] as side-product and atom numbering of W(CO)(-2) for NMR assignments.
Scheme 3Reaction pathways 1a/1b (migration–elimination) and 2a/2b (elimination–migration) for the formation of imine -3 from W(CO)(-2).
Scheme 4Reaction pathways 3a/3b/3c (CO dissociation) for the formation of imine -3 from W(CO)(-2).
Figure 1DFT calculated oxidative addition/pseudorotation/reductive elimination pathway 3c from W(CO)(-2) to W(CO)(-3).
Figure 2DFT calculated geometries of the two hydrido intermediates (,)-W(CO)(H)(-15) and (,)-W(CO)(H)(-15) and selected bond distances in Å.
Scheme 5Proposed reaction sequence from W(CO)(-2) to W(CO)(PPh) in the presence of triphenylphosphane.