Amine-functionalised aminophosphines: synthesis, reversible co-ordination to platinum and use in heteronuclear dimer formation
Abstract
Amine functionalised aminophosphines Ph2PN(R)CH2CH2NMe2 (R = H L1 or Me L2) were prepared from the reaction of PPh2Cl with NHRCH2CH2NMe2 in the presence of the base n-butyllithium (L1) or triethylamine (L2). Reaction of two equivalents of L1,2 with [PtCl2(cod)] gave the complexes cis-[PtCl2L2] (L = L11 or L22), which were shown to be fluxional with one of the amine groups reversibly co-ordinating to displace a chloride. Removal of a chloride in 1 by metathesis gave cis-[PtCl(L1-P)(L1-P,N)]PF63 which was not fluxional on the NMR timescale. Reaction of one equivalent of L2 with [PtCl2(cod)] gave the complex cis-[PtCl2(L2-P,N)] 4 in which L2 is acting as a bidentate ligand. The reaction of L2 with [{Pt(dmba)(μ-Cl)}2] (Hdmba = N,N-dimethylbenzylamine) gave [Pt(dmba)Cl(L2)] 5, which exists as a mixture of the two geometric isomers. Reaction of 5 with TlPF6 gave [Pt(dmba)(L2-P,N)]-PF66 as a single isomer in which the phosphorus atom is co-ordinated trans to the N,N-dimethylbenzylamine nitrogen atom. Complex 2 reacts with CoCl2·6H2O and ZnCl2 to give cis-[(L2-P,N)ClPt(μ-L2)MCl3] (M = Co 7 or Zn 8). The zwitterionic structure of 7 was confirmed by a single-crystal X-ray analysis, which showed no metal–metal interaction between the platinum and cobalt centres.