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通过(吡啶酰胺)hafnium(IV)催化剂的原子模拟聚合反应:抗衡阴离子对反应速率和催化体系的活性特征的影响。

Atomistic Simulation of the Polymerization Reaction by a (Pyridylamido)hafnium(IV) Catalyst: Counteranion Influence on the Reaction Rate and the Living Character of the Catalytic System.

机构信息

Graduate School of Informatics, Nagoya University, Furo-cho, Chikusa-ku, Nagoya 464-8601, Japan.

Core Research for Evolutional Science and Technology, Japan Science and Technology Agency (JST-CREST), Honmachi, Kawaguchi 332-0012, Japan.

出版信息

J Phys Chem B. 2021 Feb 11;125(5):1453-1467. doi: 10.1021/acs.jpcb.0c10977. Epub 2021 Jan 27.

DOI:10.1021/acs.jpcb.0c10977
PMID:33502856
Abstract

Atomistic simulation of the 1-octene polymerization reaction by a (pyridylamido)Hf(IV) catalyst was conducted on the basis of Red Moon (RM) methodology, focusing on the effect of the counteranions (CAs), MeB(CF), and B(CF), on the catalyst activity and chain termination reaction. We show that RM simulation reasonably reproduces the faster reaction rate with B(CF) than with MeB(CF). Notably, the initiation of the polymerization reaction with MeB(CF) is comparatively slow due to the difficulty of the first insertion. Then, we investigated the free energy map of the ion pair (IP) structures consisting of each CA and the cationic (pyridylamido)Hf(IV) catalyst with the growing polymer chain (HfCat), which determines the polymerization reaction rates, and found that HfCat-MeB(CF) can keep forming "inner-sphere" IPs even after the polymer chain becomes sufficiently bulky, while HfCat-B(CF) forms mostly "outer-sphere" IPs. Finally, we further tried to elucidate the origin of the broader molecular weight distribution (MWD) of the polymer experimentally produced with B(CF) than that with MeB(CF). Then, through the trajectory analysis of the RM simulations, it was revealed that the chain termination reaction would be more sensitive to the IP structures than the monomer insertion reaction because the former involves a more constrained structure than the latter, which is likely to be a possible origin of the MWDs dependent on the CAs.

摘要

基于 Red Moon (RM) 方法,对 (吡啶酰胺)Hf(IV) 催化剂引发 1-辛烯聚合反应进行了原子级模拟,重点研究了抗衡阴离子 (CA) MeB(CF) 和 B(CF) 对催化剂活性和链终止反应的影响。我们表明,RM 模拟合理地再现了 B(CF) 比 MeB(CF) 具有更快的反应速率。值得注意的是,由于第一个插入的困难,用 MeB(CF)引发聚合反应的速度相对较慢。然后,我们研究了由每个 CA 和带增长聚合物链的阳离子 (吡啶酰胺)Hf(IV) 催化剂组成的离子对 (IP) 结构的自由能图,该图决定了聚合反应速率,并发现 HfCat-MeB(CF) 甚至在聚合物链变得足够大之后仍能保持形成“内球”IP,而 HfCat-B(CF) 则主要形成“外球”IP。最后,我们通过 RM 模拟的轨迹分析,进一步尝试阐明与用 MeB(CF)相比,用 B(CF)实验制备的聚合物的更宽分子量分布 (MWD)的起源。结果表明,与单体插入反应相比,链终止反应对 IP 结构更为敏感,因为前者涉及的结构比后者更受限制,这可能是依赖 CA 的 MWD 的一个可能起源。

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引用本文的文献

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