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Synthesis and characterization of η5-cyclopentadienyl-silylallyl niobium and tantalum complexes

机译:η5-环戊二烯基-甲硅烷基烯丙基铌和钽配合物的合成与表征

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摘要

Reaction of the disilylcyclopentadiene 1,1-[SiMe2(CH2CHdouble bond; length as m-dashCH2)]2C5H4 with NbCl5 gave the new allylsilyl-substituted monocyclopentadienyl niobium complex [Nb{η5-C5H4SiMe2(CH2CHdouble bond; length as m-dashCH2)}Cl4]. This compound was reacted with LiNHtBu or NH2tBu to give the imido derivative [Nb{η5-C5H4SiMe2(CH2CHdouble bond; length as m-dashCH2)}(NtBu)Cl2], which was further alkylated to the imido alkyl complexes [Nb{η5-C5H4SiMe2(CH2CHdouble bond; length as m-dashCH2)}(NtBu)R2] (R = Me, CH2Ph) and [Nb{η5-C5H4SiMe2(CH2CHdouble bond; length as m-dashCH2)}(NtBu)Cl (CH2Ph)]. Reaction of the imido complexes with the corresponding lithium cyclopentadienides gave the dicyclopentadienyl-imido complexes [M(η5-C5R5){η5-C5H4SiMe2(CH2CHdouble bond; length as m-dashCH2)}(NtBu)Cl] (M = Nb, Ta; R = H, Me). Metallocene dichlorides [M(η5-C5R5){η5-C5H4SiMe2(CH2CHdouble bond; length as m-dashCH2)}Cl2] (M = Nb, Ta; R = H, Me) were easily prepared by reduction with Na/Hg and simultaneous transmetallation of [Ta(η5-C5R5)Cl4] with Li[C5H4SiMe2(CH2CHdouble bond; length as m-dashCH2)] and of [Nb{η5-C5H4SiMe2(CH2CHdouble bond; length as m-dashCH2)}Cl4] with Li(C5R5). All of the new compounds have been characterized by elemental analysis, and IR and NMR spectroscopy.
机译:二甲硅烷基环戊二烯1,1- [SiMe2(CH2CH双键;长度为m-dashCH2)] 2C5H4与NbCl5的反应生成了新的烯丙基甲硅烷基取代的单环戊二烯基铌配合物[Nb {η5-C5H4SiMe2(CH2CH双键;长度为m-dashCH2)} Cl4]。该化合物与LiNHtBu或NH2tBu反应,得到亚氨基衍生物[Nb {η5-C5H4SiMe2(CH2CH双键;长度为m-dashCH2)}(NtBu)Cl2],将其进一步烷基化为亚氨基烷基络合物[Nb {η5- C5H4SiMe2(CH2CH双键;长度为m-dashCH2)}(NtBu)R2](R = Me,CH2Ph)和[Nb {η5-C5H4SiMe2(CH2CH双键;长度为m-dashCH2)}(NtBu)Cl(CH2Ph)] 。亚胺配合物与相应的环戊二烯化锂反应,得到二环戊二烯基-亚胺配合物[M(η5-C5R5){η5-C5H4SiMe2(CH2CH双键;长度为m-dashCH2)}(NtBu)Cl](M = Nb,Ta; R = H,我)。茂金属二氯化物[M(η5-C5R5){η5-C5H4SiMe2(CH2CH双键;长度为m-dashCH2)} Cl2](M = Nb,Ta; R = H,Me)易于制备[Ta(η5-C5R5)Cl4]与Li [C5H4SiMe2(CH2CHdouble键;长度为m-dashCH2)]和[Nb {η5-C5H4SiMe2(CH2CH双键;长度为m-dashCH2)} Cl4的金属转移C5R5)。所有这些新化合物均已通过元素分析,IR和NMR光谱进行了表征。

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