Hoyt Helen M, Michael Forrest E, Bergman Robert G
Department of Chemistry, University of California, Berkeley, Berkeley, California 94720, USA.
J Am Chem Soc. 2004 Feb 4;126(4):1018-9. doi: 10.1021/ja0385944.
Monomeric imidozirconocene complexes of the type Cp2(L)Zr=NCMe3 (Cp = cyclopentadienyl, L = Lewis base) have been shown to activate the carbon-hydrogen bonds of benzene, but not the C-H bonds of saturated hydrocarbons. To our knowledge, this singularly important class of C-H activation reactions has heretofore not been observed in imidometallocene systems. The M=NR bond formed on heating the racemic ethylenebis(tetrahydro)indenyl methyl tert-butyl amide complex, however, cleanly and quantitatively activates a wide range of n-alkane, alkene, and arene C-H bonds. Mechanistic experiments support the proposal of intramolecular elimination of methane followed by a concerted addition of the hydrocarbon C-H bond. Products formed by activation of sp2 C-H bonds are generally more thermodynamically stable than those formed by activation of sp3 C-H bonds, and those resulting from reaction at primary C-H bonds are preferred over secondary sp3 C-H activation products. There is also evidence that thermodynamic selectivity among C-H bonds is sterically rather than electronically controlled.
已证明Cp2(L)Zr=NCMe3类型的单体亚氨基锆茂配合物(Cp = 环戊二烯基,L = 路易斯碱)能活化苯的碳氢键,但不能活化饱和烃的碳氢键。据我们所知,这种极其重要的碳氢键活化反应迄今在亚氨基金属茂体系中尚未被观察到。然而,加热外消旋亚乙基双(四氢)茚基甲基叔丁基酰胺配合物时形成的M=NR键能干净利落地、定量地活化多种正构烷烃、烯烃和芳烃的碳氢键。机理实验支持分子内消除甲烷后紧接着烃类碳氢键协同加成的提议。由sp2碳氢键活化形成的产物通常比由sp3碳氢键活化形成的产物在热力学上更稳定,并且由伯碳氢键反应生成的产物优于仲sp3碳氢键活化产物。也有证据表明碳氢键之间的热力学选择性是由空间效应而非电子效应控制的。