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齐格勒-纳塔催化剂和茂金属催化剂对聚烯烃结构、性能及加工性能的影响

The Influence of Ziegler-Natta and Metallocene Catalysts on Polyolefin Structure, Properties, and Processing Ability.

作者信息

Shamiri Ahmad, Chakrabarti Mohammed H, Jahan Shah, Hussain Mohd Azlan, Kaminsky Walter, Aravind Purushothaman V, Yehye Wageeh A

机构信息

Department of Chemical Engineering, Faculty of Engineering, University of Malaya, 50603 Kuala Lumpur, Malaysia.

Energy Futures Lab, Electrical Engineering Building, Imperial College London, South Kensington, London SW7 2AZ, UK.

出版信息

Materials (Basel). 2014 Jul 9;7(7):5069-5108. doi: 10.3390/ma7075069.

Abstract

50 years ago, Karl Ziegler and Giulio Natta were awarded the Nobel Prize for their discovery of the catalytic polymerization of ethylene and propylene using titanium compounds and aluminum-alkyls as co-catalysts. Polyolefins have grown to become one of the biggest of all produced polymers. New metallocene/methylaluminoxane (MAO) catalysts open the possibility to synthesize polymers with highly defined microstructure, tacticity, and steroregularity, as well as long-chain branched, or blocky copolymers with excellent properties. This improvement in polymerization is possible due to the single active sites available on the metallocene catalysts in contrast to their traditional counterparts. Moreover, these catalysts, half titanocenes/MAO, zirconocenes, and other single site catalysts can control various important parameters, such as co-monomer distribution, molecular weight, molecular weight distribution, molecular architecture, stereo-specificity, degree of linearity, and branching of the polymer. However, in most cases research in this area has reduced academia as olefin polymerization has seen significant advancements in the industries. Therefore, this paper aims to further motivate interest in polyolefin research in academia by highlighting promising and open areas for the future.

摘要

50年前,卡尔·齐格勒和朱利奥·纳塔因发现使用钛化合物和烷基铝作为助催化剂催化乙烯和丙烯聚合而被授予诺贝尔奖。聚烯烃已发展成为产量最大的聚合物之一。新型茂金属/甲基铝氧烷(MAO)催化剂为合成具有高度规整微观结构、立构规整性和全同立构规整性的聚合物,以及具有优异性能的长链支化或嵌段共聚物提供了可能性。与传统催化剂相比,茂金属催化剂具有单一活性位点,使得这种聚合反应的改进成为可能。此外,这些催化剂,如半钛茂/MAO、锆茂和其他单中心催化剂,可以控制各种重要参数,如共聚单体分布、分子量、分子量分布、分子结构、立体专一性、线性度和聚合物的支化度。然而,在大多数情况下,由于烯烃聚合在工业上取得了重大进展,该领域的研究在学术界有所减少。因此,本文旨在通过强调未来有前景和有待开拓的领域,进一步激发学术界对聚烯烃研究的兴趣。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f4c/5455813/d8b40f7d1d89/materials-07-05069-g001.jpg

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