Trimethylphosphine as a reactive solvent: synthesis, crystal structures, and reactions of [Ta(PMe3)3(η2-CH2PMe2)(η2-CHPMe2)] and [W(PMe3)4(η2-CH2PMe2)H] and related studies
Abstract
Reduction of WCl6, MoCl5, TaCl5, ReCl5, and RuCl3 using sodium sand in pure trimethylphosphine as a reactive solvent gives the compounds [W(PMe3)4(η2-CH2PMe2)H], [Mo(PMe3)5H2], [Ta(PMe3)3(η2-CH2PMe2)(η2-CHPMe2)], [Re(PMe3)5H], [Ru(PMe3)3(η2-CH2PMe2)H], and [(PMe3)3 HRu(µ-CH2PMe2)2RuH(PMe3)3], respectively. The crystal structures of the tungsten and tantalum compounds have been determined. The previously unknown ligand η2-CHPMe2 is shown to be present in the tantalum compound. The reduction of WCl6 in PMe3 by magnesium is shown to proceed in the sequence [W(PMe3)3Cl4], [{W(PMe3)3Cl2}2], [W(PMe3)4Cl2]. Reduction of [W(PMe3)3Cl4] with sodium sand under hydrogen gives [W(PMe3)4Cl2H2]. The compound [W(PMe3)4(η2-CH2PMe2)H] reacts with butadiene giving cis-[W(PMe3)2(η-C4H6)2] and with cyclopentadiene forming [W(η-C5H5)(PMe3)3H] and [W(η-C5H5)2H2]. Variable-temperature n.m.r. studies on [W(PMe3)4(η2-CH2PMe2)H] show it to be fluxional. Reduction of RUCl3 in trimethylphosphine–cyclopentene gives [Ru(PMe3)4(σ-[graphic omitted]H2)H]. The compound [W(PMe3)3H6] with spiro[2.4]hepta-4,6-diene gives [W(η-C5H4Et)(PMe3)3H].