首页> 外文OA文献 >Donor-Ligand-Substituted Cyclopentadienylchromium(III) Complexes:  A New Class of Alkene Polymerization Catalyst. 2. Phosphinoalkyl-Substituted Systems
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Donor-Ligand-Substituted Cyclopentadienylchromium(III) Complexes:  A New Class of Alkene Polymerization Catalyst. 2. Phosphinoalkyl-Substituted Systems

机译:供体 - 配体取代的环戊二烯基铬(III)配合物:一类新的烯烃聚合催化剂。 2.膦基烷基取代的体系

摘要

A series of phosphinoalkyl-substituted cyclopentadienylchromium complexes, e.g., (η:η-RPCHCH)CrCl, have been synthesized. The complexation of the P atom to the chromium has been confirmed by crystal structure determinations. Activated by methylalumoxane (MAO), these compounds catalyze the oligomerization and polymerization of ethylene. The catalytic activity and the degree of oligomerization are controlled by the steric properties of the substituents on the donor atom:  the smaller the substituent, the greater the activity and the lower the molecular weight of the oligomer. Density functional calculations indicate that propagation and termination through β-hydrogen transfer are competitive for small substituents and that the latter process, which involves spin inversion, becomes selectively disfavored with increasing size of the substituents. For large substituents β-hydrogen elimination to the chromium atom is found to be the preferred route for termination, although this reaction is less facile than insertion.
机译:已合成了一系列膦烷基取代的环戊二烯基铬配合物,例如(η:η-RPCHCH)CrCl。通过晶体结构测定已经证实了P原子与铬的络合。这些化合物被甲基铝氧烷(MAO)活化,催化乙烯的低聚和聚合。催化活性和低聚度受供体原子上取代基的空间特性控制:取代基越小,活性越高,低聚物的分子量越低。密度泛函计算表明,通过β-氢转移的传播和终止对于小的取代基而言是竞争性的,并且后者的过程(涉及自旋反转)随着取代基尺寸的增加而变得选择性不利。对于大的取代基,尽管该反应比插入更不容易,但发现将β-氢消除到铬原子上是终止反应的首选方法。

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