Issue 23, 2000

Sterically hindered iminophosphorane complexes of vanadium, iron, cobalt and nickel: a synthetic, structural and catalytic study

Abstract

Bis(aryliminophosphoranyl)alkanes L1 = (CH2)n(R12P[double bond, length half m-dash]NR2)2 (n = 1 or 2, R1 = Ph or Me, R2 = Ph, C6H2Me3-2,4,6 or C6H3Pri2-2,6) reacted with cobalt and nickel dihalides to give chelate complexes of the type MX2(L1). The reaction of Li[HC(Ph2P[double bond, length half m-dash]NR2)2] with MX2 afforded the compounds MX{HC(Ph2P[double bond, length half m-dash]NR2)2} (M = Co, X = Cl; M = Ni, X = Br). The crystal and molecular structures of CoCl2{CH2(Ph2P[double bond, length half m-dash]NPh)2} and NiBr{HC(Ph2P[double bond, length half m-dash] NC6H3Pri2)2} were determined. While the former has the expected tetrahedral structure, the latter is square planar. Ab initio calculations on the latter show that the bonding of the bis(iminophosphoranyl)methanide ligand to nickel involves π delocalisation over the N2P2C framework as well as σ bonding between nickel and the P2CH carbon atom. Bis(iminophosphoranyl)pyridines C5H3N(R2P[double bond, length half m-dash]NR′)2-2,6 (R = Ph or cyclohexyl, R′ = C6H2Me3-2,4,6, C6H3Pri2-2,6 or SiMe3) reacted with VCl3(thf )3, FeX2 (X = Cl or Br) or CoCl2 to give the corresponding octahedral (V) or five-co-ordinate (Fe, Co) complexes. The crystal structure of FeBr2{C5H3N(Ph2P[double bond, length half m-dash]NSiMe3)2-2,6} has been determined; the complex is trigonal bipyramidal. In the presence of methylaluminoxane [MeAlO]n, cobalt complexes of bis(aryliminophosphoranyl)methane are moderately active in ethene polymerisation, while bis(iminophosphoranyl)pyridine iron complexes show only low activity. The vanadium complexes polymerise ethene under ambient conditions and give polymers of very high molecular weight.

Supplementary files

Article information

Article type
Paper
Submitted
03 Aug 2000
Accepted
27 Sep 2000
First published
06 Nov 2000

J. Chem. Soc., Dalton Trans., 2000, 4247-4257

Sterically hindered iminophosphorane complexes of vanadium, iron, cobalt and nickel: a synthetic, structural and catalytic study

S. Al-Benna, M. J. Sarsfield, M. Thornton-Pett, D. L. Ormsby, P. J. Maddox, P. Brès and M. Bochmann, J. Chem. Soc., Dalton Trans., 2000, 4247 DOI: 10.1039/B006329K

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