Leung Dennis H, Ziller Joseph W, Guan Zhibin
Department of Chemistry, University of California, 1102 Natural Sciences 2, Irvine, California 92697-2025, USA.
J Am Chem Soc. 2008 Jun 18;130(24):7538-9. doi: 10.1021/ja8017847. Epub 2008 May 22.
An alpha-diimine ligand (1) containing an axial donating pyridine group is developed for late metal polymerization catalysis. Despite having no substitution on the bottom face of the ligand, the nickel and palladium complexes of 1 are highly active for ethylene polymerization, producing linear high molecular weight polymers. For example, 1-NiBr2 (3) forms PE with a Mn of up to 109 224 g/mol with 1.4 branches/1000 C's. Similarly, 1-PdMeCl (5) forms PE with a Mn of up to 880 379 g/mol with 5.1 branches/1000 C's. In sharp contrast, catalysts containing the control ligand (2) consisting of a noncoordinating phenyl group gave only low molecular weight branched oligomers. It is observed that AlMe2Cl plays a specific role in generating the active species for the pyridine-based complexes. Presumably, the pyridine group may interact with AlMe2Cl to form a bimetallic species which suppresses the beta-hydride elimination process, hence resulting in reduced chain transfer and more linear structure.
开发了一种含有轴向供电子吡啶基团的α-二亚胺配体(1)用于后过渡金属聚合催化。尽管该配体底面没有取代基,但1的镍和钯配合物对乙烯聚合具有高活性,可生成线性高分子量聚合物。例如,1-NiBr₂(3)形成的聚乙烯,其Mn高达109224 g/mol,每1000个碳原子有1.4个支链。同样,1-PdMeCl(5)形成的聚乙烯,其Mn高达880379 g/mol,每1000个碳原子有5.1个支链。与之形成鲜明对比的是,含有由非配位苯基组成的对照配体(2)的催化剂仅生成低分子量的支化低聚物。据观察,AlMe₂Cl在基于吡啶的配合物生成活性物种过程中起特定作用。据推测,吡啶基团可能与AlMe₂Cl相互作用形成双金属物种,从而抑制β-氢化物消除过程,进而减少链转移并形成更线性的结构。