Schatte Gabriele, Chivers Tristram, Tuononen Heikki M, Suontamo Reijo, Laitinen Risto, Valkonen Jussi
Department of Chemistry, University of Calgary, 2500 University Drive N.W., Calgary, Alberta, Canada T2N 1N4.
Inorg Chem. 2005 Jan 24;44(2):443-51. doi: 10.1021/ic048565+.
The hydrolysis of (t)BuNTe(mu-N(t)Bu)(2)TeN(t)Bu (1) with 1 or 2 equiv of (C(6)F(5))(3)B.H(2)O results in the successive replacement of terminal imido groups by oxo ligands to give the telluroxane-Lewis acid adducts (C(6)F(5))(3)B.OTe(mu-N(t)Bu)(2)TeN(t)Bu (2) and (C(6)F(5))(3)B.OTe(mu-N(t)Bu)(2)Te(mu-O) (3), which were characterized by multinuclear NMR spectroscopy and X-ray crystallography. The Te=O distance in 2 is 1.870(2) A. The di-adduct 3 involves the association of four (t)()BuNTeO monomers to give a tetramer in which both terminal Te=O groups [d(TeO) = 1.866(3) A] are coordinated to B(C(6)F(5))(3). The central Te(2)O(2) ring in 3 is distinctly unsymmetrical [d(TeO) = 1.912(3) and 2.088(2) A]. The X-ray structure of (C(6)F(5))(3)B.NH(2)(t)()Bu (4), the byproduct of these hydrolysis reactions, is also reported. The geometries and energies of tellurium(IV) diimides and imido telluroxanes were determined using quantum chemical calculations. The calculated energies for the reactions E(NR)(2) + Te(NR)(2) (E = S, Se, Te; R = H, Me, (t)Bu, SiMe(3)) confirm that cyclodimerization of tellurium(IV) diimides is strongly exothermic. In the mixed-chalcogen systems, the cycloaddition is energetically favorable for the Se/Te combination. The calculated energies for the further oligomerization of the dimers XE(mu-NMe)(2)EX (E = Se, Te; X = NMe, O) indicate that the formation of tetramers is strongly exothermic for the tellurium systems but endothermic (X = NMe) or thermoneutral (X = O) for the selenium systems, consistent with experimental observations.
(t)BuNTe(μ-N(t)Bu)₂TeN(t)Bu(1)与1或2当量的(C₆F₅)₃B·H₂O水解,导致末端亚氨基基团被氧代配体依次取代,生成碲氧烷 - 路易斯酸加合物(C₆F₅)₃B·OTe(μ-N(t)Bu)₂TeN(t)Bu(2)和[(C₆F₅)₃B·OTe(μ-N(t)Bu)₂Te(μ-O)]₂(3),通过多核NMR光谱和X射线晶体学对其进行了表征。2中Te = O的距离为1.870(2) Å。二聚加合物3涉及四个(t)BuNTeO单体缔合形成四聚体,其中两个末端Te = O基团[d(TeO) = 1.866(3) Å]与B(C₆F₅)₃配位。3中的中心Te₂O₂环明显不对称[d(TeO) = 1.912(3)和2.088(2) Å]。还报道了这些水解反应的副产物(C₆F₅)₃B·NH₂(t)Bu(4)的X射线结构。使用量子化学计算确定了碲(IV)二亚胺和亚氨基碲氧烷的几何结构和能量。对于反应E(NR)₂ + Te(NR)₂(E = S、Se、Te;R = H、Me、(t)Bu、SiMe₃)计算得到的能量证实,碲(IV)二亚胺的环二聚化是强烈放热的。在混合硫族元素体系中,环加成对于Se/Te组合在能量上是有利的。对于二聚体XE(μ-NMe)₂EX(E = Se、Te;X = NMe、O)进一步低聚计算得到的能量表明,对于碲体系,四聚体的形成是强烈放热的,但对于硒体系是吸热的(X = NMe)或热中性的(X = O),这与实验观察结果一致。