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Roles of Salicylate Donors in Enhancement of Productivity and Isotacticity of Ziegler–Natta Catalyzed Propylene Polymerization

机译:水杨酸酯给体在提高齐格勒-纳塔催化丙烯聚合反应的生产率和全同立构规整度中的作用

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摘要

Roles of internal salicylate donors (SID) in enhancing activity and stereoselectivity of Ziegler–Natta catalyzed propylene (PP) polymerization were examined using DFT calculations. Five salicylate donors were studied. The chelate mode is the preferred adsorption mode. The linear relationship (R = 0.96) between calculated adsorption energies (E ) of five SIDs and the experimental PP activities was observed. Thus, the SID with the strongest adsorption energy will provide the highest activity in agreement with our previous studies. Compared with diisobutyl phthalate (DIBP), which is the industrial electron donor, SID has stronger E . The insertion step, which involves the π-complex formation (∆E ) and the insertion activation or intrinsic activation energy (E ) for PP polymerization was also examined. The relation between ln(activity) and apparent activation energy (E (app)), which is ∆E + E for the primary(1,2)- insertion with R = 0.99, was observed. The salicylate donor also has a lower E (app) than that of DIBP. This explains the better catalytic performance of SID. Our results also demonstrated that the size and the type of hydrocarbon substituents play a key role in controlling stereoselectivity and activity. In addition, we found a good relationship between E and both intrinsic (E ) and apparent (E (app)) activation energies of five salicylate donors with R of 0.90 and 0.97, respectively.
机译:使用DFT计算检查了内部水杨酸酯供体(SID)在增强Ziegler–Natta催化的丙烯(PP)聚合活性和立体选择性中的作用。研究了五个水杨酸盐供体。螯合模式是优选的吸附模式。观察到五个SID的计算出的吸附能(E)与实验PP活性之间的线性关系(R = 0.96)。因此,与我们先前的研究一致,具有最强吸附能的SID将提供最高的活性。与工业电子给体的邻苯二甲酸二异丁酯(DIBP)相比,SID具有更强的E。还研究了涉及π络合物形成(∆E)和PP聚合反应的插入活化或本征活化能(E)的插入步骤。观察到ln(活性)和表观活化能(E(app))之间的关系,对于R = 0.99的一次(1,2)插入,其为∆E +E。水杨酸酯供体的E(app)也比DIBP低。这解释了SID更好的催化性能。我们的结果还证明,烃取代基的大小和类型在控制立体选择性和活性中起关键作用。此外,我们发现E与五个水杨酸酯供体的内在(E)和表观(E(app))活化能之间有良好的关系,R分别为0.90和0.97。

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