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首页> 外文期刊>Journal of Organometallic Chemistry >Theoretical studies on the role of bridging group of CGC type ligands for the Ziegler-Natta catalysis
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Theoretical studies on the role of bridging group of CGC type ligands for the Ziegler-Natta catalysis

机译:CGC型配体桥联基团在齐格勒-纳塔催化中的作用的理论研究

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摘要

The potential energy surfaces of the initial reactions of ethylene polymerization with the Ziegler-Natta catalysis related to the constrained geometric catalysts(CGCs)were studied by the B3LYP density functional method.Three metals(Ti,Zr,and Hf) in the Ziegler-Natta catalysis and eight bridging groups(BH,CH2,NH,O,AlH,SiH2,PH,and S)between cyclopentadienyl(Cp)and NH ligands were treated.The reaction occurs through two steps as that of Kaminsky type:the first step produces the complex without a barrier and the second is the insertion of ethylene into the metal-carbon bond through the transition state. The complex formation energy for each metal system correlates linearly to the electronegativity of the bridging atom for each row atom of the periodic table except for those of the BH-bridging systems.The energies of the reactions for the BH-bridging systems could be explained with the through-bond model as the reactions of ansa-metallocenes and the p back-donation of B=N double bond.
机译:用B3LYP密度泛函方法研究了乙烯与Ziegler-Natta催化的聚合反应初期的势能面。CGCs与约束几何催化剂有关。Ziegler-Natta中的三种金属(Ti,Zr和Hf)催化反应并处理了环戊二烯基(Cp)与NH配体之间的八个桥连基团(BH,CH2,NH,O,AlH,SiH2,PH和S),该反应通过Kaminsky型反应通过两个步骤进行:第一步没有障碍的络合物,第二个是通过过渡态将乙烯插入金属-碳键中。除BH桥连体系外,每个金属体系的复杂形成能均与周期表中每个行原子的桥连原子的电负性线性相关.BH桥连体系的反应能可解释为通过键的模型是ansa-茂金属与B = N双键的p背键反应。

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