二胺供体配体的氯化钪、烷基和苯基配合物

Benjamin D. Ward, Stuart R. Dubberley, aline maisse-françois, L. Gade, P. Mountford
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引用次数: 10

摘要

锂化二氨基吡啶配体Li2N2TMSNpy或Li2N2NC2,TMS与ScCl3在四氢呋喃(THF)中反应得到五坐标氯化钪衍生物[Sc(N2TMSNpy)Cl(THF)] 1和[Sc(N2NC2,TMS)Cl(THF)] 2,其中N2TMSNpy = MeC(2- c5h4n)(CH2NSiMe3)2和N2NC2,TMS = Me3SiN(CH2CH2NSiMe3)2。ScCl3与氨基n -甲基化的二碳类似物N2NC2、Me (N2NC2,Me = MeN(CH2CH2NSiMe3)2)或氨基n -硅化的三碳链类似物N2NC3、TMS (N2NC3,TMS = Me3SiN(CH2CH2CH2NSiMe3)2)的二盐反应均无可处理产物。与此相反,sccl3与n -甲基化的同源三碳链化合物Li2N2NC3,Me (N2NC3,Me = MeN(CH2CH2CH2NSiMe3)2)反应得到无thf的双核氯桥化合物[Sc2(N2NC3,Me)2(μ-Cl)2] 3。化合物1-3已被晶体学表征。通过H2N2R ' npy (N2R ' npy = MeC(2- c5h4n)(CH2NR ')2,其中R ' = SiMe3, Tol (4- c6h4me)或Mes (2,4,6- c6h2me3))和H2N2NC2,R ' (R ' = Me或SiMe3)与[ScR3(THF)2] (R = CH2SiMe3或Ph)在苯中的质子解反应制备了1和2的有机金属类似物[Sc(N2R ' npy)R(THF)] (R = CH2SiMe3, R ' = sime4, Tol 5或Mes 6);R = Ph, R ' = sime37)和[Sc(N2NC2,R ')(CH2SiMe3)(THF)] (R ' = Me 8或sime39).化合物4也可由1与LiCH2SiMe3反应制备。[Sc(CH2SiMe3)3(THF)2]与H2N2NC3,Me反应无可处理产物,与H2N2NC3,TMS在二苯中通过1H NMR观察到不稳定化合物[Sc(N2NC3,TMS)(CH2SiMe3)(THF)] 10,但无法分离得到。有一次得到了不含thf的二聚烷基[Sc2(N2TolNpy)2(CH2SiMe3)2] 11。该化合物每个N2TolNpy配体具有一个桥接氮和一个末端酰胺氮。测定了6和11的x射线晶体结构。单体化合物1、2和6在固体状态下均具有三角双锥体Sc中心;中性给体占据了轴位,酰胺氮和Cl或CH2SiMe3占据了平伏位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scandium chloride, alkyl and phenyl complexes of diamido-donor ligands
Reactions of the lithiated diamido-pyridine and -amine ligands Li2N2TMSNpy or Li2N2NC2,TMS with ScCl3 in tetrahydrofuran (THF) afforded the five-coordinate scandium chloride derivatives [Sc(N2TMSNpy)Cl(THF)] 1 and [Sc(N2NC2,TMS)Cl(THF)] 2 where N2TMSNpy = MeC(2-C5H4N)(CH2NSiMe3)2 and N2NC2,TMS = Me3SiN(CH2CH2NSiMe3)2. The corresponding reactions of ScCl3 with the dilithium salts of the amino N-methylated two-carbon analogue N2NC2,Me (N2NC2,Me = MeN(CH2CH2NSiMe3)2) or of the amino N-silylated three-carbon chain analogue N2NC3,TMS (N2NC3,TMS = Me3SiN(CH2CH2CH2NSiMe3)2) afforded no tractable products. In contrast, reaction of ScCl3with the homologous N-methylated three-carbon chain species Li2N2NC3,Me (N2NC3,Me = MeN(CH2CH2CH2NSiMe3)2) cleanly gave the THF-free dinuclear, chloride-bridged compound [Sc2(N2NC3,Me)2(μ-Cl)2] 3. The compounds 1–3 have been crystallographically characterised. Organometallic analogues of 1 and 2 have been prepared by protonolysis reactions of H2N2R′Npy (N2R′Npy = MeC(2-C5H4N)(CH2NR′)2 where R′ = SiMe3, Tol (4-C6H4Me) or Mes (2,4,6-C6H2Me3)) and H2N2NC2,R′ (R′ = Me or SiMe3) with [ScR3(THF)2] (R = CH2SiMe3 or Ph) in benzene which gave the five-coordinate alkyl or phenyl compounds [Sc(N2R′Npy)R(THF)] (R = CH2SiMe3, R′ = SiMe3 4, Tol 5 or Mes 6; R = Ph, R′ = SiMe3 7) and [Sc(N2NC2,R′)(CH2SiMe3)(THF)] (R′ = Me 8 or SiMe3 9). The compound 4 can also be prepared by the reaction of 1 with LiCH2SiMe3. Reaction of [Sc(CH2SiMe3)3(THF)2] with H2N2NC3,Me afforded no tractable product, and with H2N2NC3,TMS in deuterobenzene the labile compound [Sc(N2NC3,TMS)(CH2SiMe3)(THF)] 10 was observed by 1H NMR spectroscopy but could not be isolated. On one occasion the THF-free dimeric alkyl species [Sc2(N2TolNpy)2(CH2SiMe3)2] 11 was obtained. This compound possesses one bridging and one terminal amido nitrogen per N2TolNpy ligand. The X-ray crystal structures of 6 and 11 have been determined. The monomeric compounds 1, 2 and 6 all have trigonal bipyramidal Sc centres in the solid state; the neutral donors take up the axial sites, and the amido nitrogens and either Cl or CH2SiMe3 occupy the equatorial ones.
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