Abstract

Treatment of the σ,η3(5e)-butadienyl complex [Ru{C(Ph)-η3-C(Ph)C(Ph)C(Ph)CHO}(η-C5H5)]1 with P(OMe)3 affords the acyl complex [Ru{C(O)C(Ph)C(Ph)-η2-(Z)-C(Ph)CH(Ph)}{P(OMe)3}(η-C5H5)], structurally identified by single-crystal X-ray diffraction. This reaction involves an apparent 1,5-hydrogen shift from the aldehydic carbon to the former alkylidene carbon. Reaction of the related complex [Ru{C(Ph)-η3-C(Ph)C(Ph)CH(Ph)}(η-C5H5)]2 with diphenylacetylene gives [Ru(η5-endo-C6Ph6H)(η-C5H5)], whereas reaction of 2 with the electrophilic reagent HBF4·Et2O affords the 1,3-diene cationic complex [Ru{η4-(E,Z)-CH(Ph)C(Ph)C(Ph)CH(Ph)}{P(OMe)3}(η-C5H5)][BF4]. In contrast, protonation of the adduct formed between 2 and P(OMe)3, the complex [Ru{C(Ph)C(Ph)-η2-C(Ph)CH(Ph)}{P(OMe)3}(η-C5H5)], gives the isomeric cation [Ru{η4-(Z,Z)-CH(Ph)C(Ph)-C(Ph)CH(Ph)}{P(OMe)3}(η-C5H5)][BF4]. An attempt to convert 2 into a 17e cation by oxidation with p-nitrobenzenediazonium tetrafluoroborate leads instead to formation of the aryldiazenido complex [Ru{C(Ph)C(Ph)-η2-C(Ph)CH(Ph)}(p-NO2C6H4N2)(η-C5H5)]. The mechanisms of these reactions are discussed.

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