Casey Charles P, Tunge Jon A, Lee Ting-Yu, Fagan Maureen A
University of Wisconsin-Madison, 1101 University Avenue, Madison, WI 53706, USA.
J Am Chem Soc. 2003 Mar 5;125(9):2641-51. doi: 10.1021/ja0209971.
Agostic interactions in yttrium alkyls are structure dependent. Primary alkyl yttrium complexes have beta-CH(2) agostic interactions at low temperature, but a shift toward alpha-agostic interactions occurs on warming. For the more crowded beta-disubstituted yttrium alkyls, an alpha-CH(2) agostic interaction is seen. The thermodynamics of alkene binding to the primary alkyl yttrium complex Cp(2)YCH(2)CH(2)CH(CH(3))(2) (2) depend strongly on the structure of the alkene. A single allylic substituent on the alkene has a small effect on alkene binding, but a second allylic substituent has a large destabilizing effect. Propene binding to yttrium alkyls is largely independent of the nature of the alkyl ligand. Equilibrium constants for propene binding to n-, gamma-substituted, beta-substituted, and secondary alkyl yttrium complexes are similar. The rate of migration of an alkyl group to a coordinated alkene depends strongly on the structure of the alkyl group: n-alkyl approximately gamma-substituted >> beta-substituted >> alpha-substituted. The approximately 200-fold slower insertion of propene into Cp(2)YCH(2)CH(CH(3))(2) (6) than that into Cp(2)YCH(2)CH(2)CH(CH(3))(2) (2) is therefore due to kinetically slow migration of the beta-disubstituted alkyl group of 6 and not to differences in the equilibrium binding of propene. Processes related to chain transfer and site epimerization at the metal center are also reported.
烷基钇中的agostic相互作用取决于结构。伯烷基钇配合物在低温下具有β-CH₂ agostic相互作用,但升温时会向α-agostic相互作用转变。对于空间位阻更大的β-二取代烷基钇,会观察到α-CH₂ agostic相互作用。烯烃与伯烷基钇配合物Cp₂YCH₂CH₂CH(CH₃)₂ (2) 的结合热力学强烈依赖于烯烃的结构。烯烃上的单个烯丙基取代基对烯烃结合影响较小,但第二个烯丙基取代基具有较大的去稳定化作用。丙烯与烷基钇的结合在很大程度上与烷基配体的性质无关。丙烯与正烷基、γ-取代、β-取代和仲烷基钇配合物的结合平衡常数相似。烷基向配位烯烃迁移的速率强烈依赖于烷基的结构:正烷基≈γ-取代>>β-取代>>α-取代。因此,丙烯插入Cp₂YCH₂CH(CH₃)₂ (6) 的速率比插入Cp₂YCH₂CH₂CH(CH₃)₂ (2) 的速率慢约200倍,这是由于6的β-二取代烷基在动力学上迁移缓慢,而不是丙烯平衡结合的差异。还报道了与金属中心的链转移和位点差向异构化相关的过程。