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The synthesis, coordination chemistry and ethylene polymerisation activity of ferrocenediyl nitrogen-substituted ligands and their metal complexes
Authors:Vernon C. Gibson   Charlotte K.A. Gregson   Catherine M. Halliwell   Nicholas J. Long   Philip J. Oxford   Andrew J.P. White  David J. Williams
Affiliation:

aImperial College London, Exhibition Road, South Kensington, London, SW7 2AZ, United Kingdom

bThe National Physical Laboratory, Hampton Road, Teddington, Middlesex TW11 0LW, United Kingdom

Abstract:Treatment of aminoferrocene with substituted 2-hydroxybenzaldehydes yields the air- and moisture-stable ligands 14, which were then reacted to form the chromium dichloride complexes 57 and the nickel bis-chelate species 8 and 9. The metal compounds are very air-sensitive but the chromium compounds act as pre-catalysts for the polymerisation of ethylene. Reaction of 1,1′-bis(amino)ferrocene with similarly substituted 2-hydroxybenzaldehyes or simple benzaldehyde gives the ligands 1012 and 17, respectively. The X-ray crystal structure of 11 shows the molecule to have non-crystallographic C2 symmetry and to be linked by C–Hπ interactions between the anthracene rings. Titanium-containing complexes 1316 can be formed utilising ligands 1012 and there is a change in geometry within the complexes dependent on the adjacent co-ligands, whilst ligand 17 can be reacted with PdClMe(COD) to form the chelate complex 18. Cyclic voltammetric studies have been carried out on 18 and its oxidised analogue 19, but both complexes are inactive towards ethylene polymerisation.
Keywords:Ferrocene   Catalysis   N-ligands   Transition metals   Ethylene polymerisation
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