Cycloaddition reactions of titanium and zirconium imido, oxo and hydrazidocomplexes supported by tetraaza macrocyclic ligands

Citation
Aj. Blake et al., Cycloaddition reactions of titanium and zirconium imido, oxo and hydrazidocomplexes supported by tetraaza macrocyclic ligands, J CHEM S DA, (3), 1999, pp. 379-391
Citations number
66
Categorie Soggetti
Inorganic & Nuclear Chemistry
Journal title
JOURNAL OF THE CHEMICAL SOCIETY-DALTON TRANSACTIONS
ISSN journal
03009246 → ACNP
Issue
3
Year of publication
1999
Pages
379 - 391
Database
ISI
SICI code
0300-9246(19990207):3<379:CROTAZ>2.0.ZU;2-7
Abstract
The tetraaza macrocycle-supported titanium and zirconium imido complexes [T i(NR)(Me(n)taa)] [R = Bu-t, Ph, Tol or 4-C6H4NO2; II = 3 or 8 where H(2)Me( n)taa = tetra- or octa-methyldibenzotetraaza[14]annulene, respectively] and [Zr(NC6H3Pr2i-2,6)(py)(Me(4)taa)] react with isocyanates or carbon dioxide to form cycloaddition products generally of the type [M{N(R)C(O)E}(Me(n)ta a)] (M = Ti or Zr, R = aryl or tert-butyl, E = O, NBut or N-aryl). The comp lex [Zr{N(C6H3Pr2i-2,6)C(O)N(Bu-t)} (Me(4)taa)] is also formed by reaction of the bis(arylimide) [Zr(NHC6H3Pri-2,6)(2)(Me(4)taa)] with (BuNCO)-N-t. Th e crystal structures of [Ti{N(Tol)C(O)O} (Me(4)taa)] (Tol = p-tolyl) and [Z r{N(C6H3Pr2i-2,6)C(O)N(Bu-t)}(Me(4)taa)] are described. The tert-butyl imid o complexes [Ti(NBut)(Me(n)taa)] (n = 4 or 8) react with Ph2NNH2 to give th e corresponding terminal NN-diphenylhydrazido derivatives [Ti(NNPh2)(Me(4)t aa)] and these yield the cycloaddition products [Ti{N(NPh2)C(O)O} (Me(n)taa )] or [Ti{N(NPh2)C(O)N(Tol)} (Me(n)taa)] with CO2 or TolNCO, respectively. The related titanium oxo complexes [Ti(O)(Me(n)taa)] (n = 4 or 8) react wit h p-tolyl isocyanate to form the N:O-carbamate products [Ti{N(Tol)C(O)O} (M e(n)taa)], and with ditolylcarbodiimide to form the N,N-ureate derivative [ Ti{N(Ph)C(O)N(Ph)}(Me(n)taa)] in which complete rupture of the Ti=O linkage has occurred. Reaction of the N-phenyl-N-tolyl (asymmetric) ureate [Ti{N(P h)C(O)N(Tol)} (Me(4)taa)] with an excess of PhNCO gave quantitative convers ion to the N,N-symmetric product [Ti{N(Ph)C(O)N(Ph)} (Me(4)taa)] and TolNCO . Crossover NMR tube experiments suggest that this reaction occurs via an a ssociative mechanism.