首页> 外文期刊>Journal of the American Chemical Society >Synthesis, reactivity, and DFT studies of tantalum complexes incorporating diamido-N-heterocyclic carbene ligands. Facile endocyclic C-H bond activation
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Synthesis, reactivity, and DFT studies of tantalum complexes incorporating diamido-N-heterocyclic carbene ligands. Facile endocyclic C-H bond activation

机译:钽二胺-N-杂环卡宾配体的钽配合物的合成,反应性和DFT研究。简便的环内C-H键激活

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The syntheses of tantalum derivatives with the potentially tridentate diamido-N-heterocyclic carbene (NHC) ligand are described. Aminolysis and alkane elimination reactions with the diamine-NHC ligands, (Ar)[NCN]H-2 (where (Ar)[NCN]H-2 = (ArNHCH2CH2)(2)(C3N2); Ar = Mes, p-Tol), provided complexes with a bidentate amide-amine donor configuration. Attempts to promote coordination of the remaining pendent amine donor were unsuccessful. Metathesis reactions with the dilithiated diamido-NHC ligand ((Ar)[NCN]-Li-2) and various ClxTa(NR'(2))(5-x) precursors were successful and generated the desired octahedral (Ar)[NCN]TaClx(NR'(2))(3-x) complexes. Attempts to prepare trialkyl tantalum complexes by this methodology resulted in the formation of an unusual metallaaziridine derivative. DFT calculations on model complexes show that the strained metallaaziridine ring forms because it allows the remaining substituents to adopt preferable bonding positions. The calculations predict that the lowest energy pathway involves a tantalum alkylidene intermediate, which undergoes C-H bond activation R to the amido to form the metallaaziridine moiety. This mechanism was confirmed by examining the distribution of deuterium atoms in an experiment between (Mes)[NCN]Li-2 and Cl2Ta(CD2Ph)(3). The single-crystal X-ray structures of (p-Tol)[NCNH]Ta(NMe2)(4) (3), (Mes)[NCNH]Ta=CHPh(CH2Ph)(2) (4), (p-Tol)[NCN]Ta(NMe2)(3) (7), (Mes)[NCCN]Ta((CH2Bu)-Bu-t)(2) (11), and (Mes)[NCCN]-TaCl((CH2Bu)-Bu-t) (14) are included.
机译:描述了钽衍生物与潜在的三齿二氨基-N-杂环卡宾(NHC)配体的合成。与二胺-NHC配体(Ar)[NCN] H-2(其中(Ar)[NCN] H-2 =(ArNHCH2CH2)(2)(C3N2); Ar = Mes,p-Tol ),提供具有双齿酰胺-胺供体构型的配合物。未能促进剩余的侧链胺供体的协调。与二锂化的氨基-NHC配体((Ar)[NCN] -Li-2)和各种ClxTa(NR'(2))(5-x)前体进行的复分解反应成功并产生了所需的八面体(Ar)[NCN] TaClx(NR'(2))(3-x)络合物。尝试通过该方法制备三烷基钽配合物导致形成不寻常的金属laaziridine衍生物。对模型配合物的DFT计算表明,形成了应变的金属laaziridine环,因为它允许其余的取代基采用优选的键合位置。该计算预测最低的能量途径涉及钽亚烷基中间体,该中间体经历C-H键活化R至酰胺基以形成金属基氮丙啶部分。通过检查(Mes)[NCN] Li-2和Cl2Ta(CD2Ph)(3)之间的实验中氘原子的分布,证实了该机理。 (p-Tol)[NCNH] Ta(NMe2)(4)(3),(Mes)[NCNH] Ta = CHPh(CH2Ph)(2)(4),(p- Tol)[NCN] Ta(NMe2)(3)(7),(Mes)[NCCN] Ta((CH2Bu)-Bu-t)(2)(11)和(Mes)[NCCN] -TaCl((包括(CH2Bu)-Bu-t)(14)。

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