Abstract
Reaction of the isonitrile anion [M(CNMe)(CO)2(η-C5H5)]–(M = Mo or W) with I(CH2)3I in tetrahydrofuran solution results in good yields of the carbene complexes cis-[MI{[graphic omitted]Me}(CO)2(η-C5H5)]. The structure of the molybdenum compound was studied by X-ray crystallography. It crystallises as red needles, triclinic, a= 7.824(3), b= 13.363(6), c= 14.559(6)A, α= 78.62(4), β= 77.37(3), and γ= 80.99(4)°; R converged to 0.0385 for 2 378 independent reflections. There are two essentially similar independent molecules within the asymmetric unit. The cyclic carbene ligand and the iodine atom are mutually cis. The carbene ligand adopts a reverse orientation relative to the cyclopentadienyl ring in that the NMe substituent is orientated below the basal plane away from the cyclopentadienyl ring in contrast to the O substituent in related oxacyclopentylidene complexes. The molecule fails to interconvert from the observed cis configuration to the expected trans complex. An important feature of the formation of this molecule is a facile migration reaction of the alkyl chain to an isonitrile ligand. The six-membered carbene ring complex cis-[Mol{[graphic omitted]Me}(CO)2(η-C5H5)] is formed in the analogous reaction of [Mo(CNMe)(CO)2(η-C5H5)]– with I(CH2)4I. Both molybdenum carbene complexes react with Li(BEt3H) by attack at the carbene affording [[graphic omitted]Me}(CO)2(η-C5H5)](n= 3 or 4). Treatment of these complexes with acid results in the evolution of the organic heterocycle N-methylpyrrolidine (n= 3) or N-methylpiperidine (n= 4). The acyclic carbene compounds cis-[MI(CMeNHMe)(CO)2(η-C5H5)](= Mo or W) are formed in high yield in the reaction of the corresponding anion [M(CNMe)(CO)2(η-C5H5)]– with MeI followed by MeCO2H and LiI.
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