茂金属催化剂引发的乙烯和异戊二烯共聚反应

IF 5.3 2区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Amjad Ali , Muhammad Nadeem , Ahmad Naveed , Jamile Mohammadi Moradian , Syed Najeeb-Uz-Zaman Haider , Shahid Khan , Adnan Murad Bhayo , Jianwei Lu , Rai Nauman Ali , Naushad Ahmad , Fan Zhiqiang , Li Guo
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引用次数: 0

摘要

在本研究中,我们探讨了茂金属催化剂在乙烯/异戊二烯(E/IP)共聚过程中的动态性质,重点是各种反应参数的影响。挑战:为什么烯烃催化剂在温度较高时活性和分子量(Mw)较低,而在二烯含量较高时活性较低?首先,我们研究了使用 1.25 μmole 茂金属在高温下催化剂活性和分子量降低的现象。值得注意的是,活性位点在 30 °C 至 40 °C 之间大幅增加,达到 89% 的峰值。令人惊讶的是,温度进一步升高会导致活性位点明显减少。在 30 °C 时,活性位点主要通过 3,4 连接插入 IP,没有检测到顺式-1,4 或反式-1,4 连接,这表明在此温度下缺乏立体选择性。在 40-50°C 时,顺式/反式-1,4 连接和活性位点接近较高水平。这意味着链转移反应的减少,使催化活性位点更有利于顺式/反式-1,4 连接。其次,我们观察到 IP 浓度对 E/IP 共聚物、活性中心的显著影响,当 IP 量为 0.116-0.48 摩尔/升时,活性表现稳定,当 IP 量为 0.96 摩尔/升时,活性开始下降,表明超过了失活的临界值。增加 IP 浓度不仅会降低活性和活性位点,而且也无法重新激活休眠的聚乙烯位点。随着 IP 浓度的升高,共聚物的 Mw 和活性中心逐渐减少,这表明与 E 相比,IP 的链转移反应更快。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Copolymerization of ethylene and isoprene initiated by metallocene catalyst

In this study, we explore the dynamic nature of metallocene catalysts during ethylene/isoprene E/IP) copolymerization, with a focus on the influence of various reaction parameters. Challenges, why do olefinic catalysts show lower activity and molecular weight (Mw) at higher temperatures and low activity with higher diene content? Firstly, we investigate the observed phenomena of decreased catalyst activity and Mw at elevated temperatures using 1.25 μmole of the metallocene. Notably, a substantial increase in active sites from 30 °C to 40 °C, reaching a peak of 89 %. Surprisingly, further temperature increments lead to a noticeable decline in active sites. At 30 °C, the active site primarily engages in the insertion of IP through 3,4 connections, with no detectable cis-1,4 or trans-1,4 connections, which suggests a lack of stereoselectivity at this temperature. At 40–50°C, cis/trans-1,4 connections and active sites are approaching a higher level. This implies a reduction in chain transfer reactions, making catalytic active sites more favorable to cis/trans-1,4 connections. Secondly, we observe a remarkable impact of IP concentration in the E/IP copolymers, active centers, and activity show stability when the amount of IP was 0.116–0.48 mol/L and then started to decline when the amount of IP 0.96 mol/L, indicating a threshold beyond which deactivation occurs. Increasing IP concentration not only reduces activity and active sites but also fails to reactivate dormant polyethylene sites. The Mw and active centers of copolymers progressively decrease with elevated IP concentration, suggesting a faster chain transfer reaction with IP compared to E.

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来源期刊
Arabian Journal of Chemistry
Arabian Journal of Chemistry CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
10.80
自引率
3.30%
发文量
763
审稿时长
63 days
期刊介绍: The Arabian Journal of Chemistry is an English language, peer-reviewed scholarly publication in the area of chemistry. The Arabian Journal of Chemistry publishes original papers, reviews and short reports on, but not limited to: inorganic, physical, organic, analytical and biochemistry. The Arabian Journal of Chemistry is issued by the Arab Union of Chemists and is published by King Saud University together with the Saudi Chemical Society in collaboration with Elsevier and is edited by an international group of eminent researchers.
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