Why only half of the added ansa-metallocene catalyst active in the E/P/diene polymerization: catalyst evaluation in terms of active center [Zr]/[C*] fraction and polymerization propagation rate constants

Amjad Ali, Adnan Murad Bhayo, A. Naveed, Tariq Aziz, N. Ahmad, Waqar Ahamad Qureshi, Adnan Younis, Jamile Mohammadi Moradian, M. Hassan, Muhammad Minhaj Qadri, Zhiqiang Fan, Li Guo
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引用次数: 1

Abstract

Abstract To understand how the silyl-bridged metallocene catalysts rac-Me2Si(2-Me-4-Ph-Ind)2ZrCl2 behave against dienes under the same reaction condition because of its importance as a commercial polymerization catalyst and ethylene propylene diene monomers (EPDM). Adding diene depressed the catalytic activity, especially 5-ethylidene-2-norbornene (ENB) exerted the most substantial deactivation effect. Firstly, we examine the (ENB, vinyl norbornene (VNB) and 4-vinylcyclohexene (VCH)) non-conjugated and conjugated (isoprene (IP), butadiene (BD)) diene and address how polymerization catalysts behave against these dienes. For example, the catalytic activity was enhanced with IP and BD (3–3.3106 gm/mmolMt·h) compared to ENB, VNB and VCH. The VNB incorporation rate was prolonged (5.4 mol%), but with IP and BD, it was relatively moderate. E/P/IP and E/P/BD with higher incorporation of E produced a higher MW, which means that the chain transfer reaction with ethylene is slower than P. Secondly, we address how the dienes exocyclic and exocyclicπ bonds of non-conjugated and conjugated properties of IP and BD affect the kinetic measurements such as active centers [Zr]/[C*] fraction, EPDM chain propagation, termination, and isomerization. Finally, we compare [Zr]/[C*] and kpPE, kpP and kpDienes for different EPDM. After collecting these kinetic parameters, we can describe the mechanism’s intricacy and the existence of considerable catalyst dormancy with dienes under identical reaction conditions. Graphical Abstract
为什么在E/P/二烯聚合中,只有一半的双茂金属催化剂具有活性:催化剂的活性中心[Zr]/[C*]分数和聚合速率常数的评价
摘要:了解硅基桥接茂金属催化剂rac-Me2Si(2-Me-4-Ph-Ind)2ZrCl2在相同反应条件下对二烯的反应,因为它是一种重要的商业聚合催化剂和乙丙二烯单体(EPDM)。二烯的加入降低了催化活性,其中5-乙基-2-降冰片烯(ENB)的失活效果最大。首先,我们研究了(ENB,乙烯基降冰片烯(VNB)和4-乙烯基环己烯(VCH))非共轭和共轭(异戊二烯(IP),丁二烯(BD))二烯,并讨论了聚合催化剂对这些二烯的反应。例如,与ENB、VNB和VCH相比,IP和BD (3-3.3106 gm/ mmmt·h)增强了催化活性。VNB的掺入率延长(5.4 mol%),但IP和BD的掺入率相对温和。E含量较高的E/P/IP和E/P/BD与乙烯的链转移反应比P慢。其次,研究了IP和BD的非共轭和共轭性质的二烯外环和外环π键对活性中心[Zr]/[C*]分数、EPDM链的传播、终止和异构化等动力学测量的影响。最后,我们比较了[Zr]/[C*]和kpPE, kpP和kpdiene对于不同EPDM的影响。收集这些动力学参数后,我们可以描述机理的复杂性和在相同的反应条件下与二烯存在相当的催化剂休眠。图形抽象
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