Li Bin, Li Huashu, Hu Hongfan, Zhou Yi, Mao Guoliang, Xin Shixuan
Provincial Key Laboratory of Polyolefin New Materials, College of Chemistry & Chemical Engineering, The Northeast Petroleum University, Daqing 163000, China.
PetroChina Petrochemical Research Institute, PetroChina Company Limited, Beijing 102206, China.
Polymers (Basel). 2024 Sep 24;16(19):2687. doi: 10.3390/polym16192687.
The electron donors (ED) in Ziegler-Natta (Z-N) catalysis are classified as internal electron donors (IED) and external electron donors (EED), and both IED and EED are indispensable components for enhancing the catalytic reactivity and regulating the stereoregularity of polyolefinic materials in a typical industrial Z-N catalytic process. With the intensive research on ED, the Z-N catalyst performances have experienced successive progress in the last few decades. Polypropylenes (PP) as a commodity polyolefin material, especially the isotactic PP (iPP), are produced in multi-billion pounds per annum by utilization of the various IED- and EED-assisted Z-N catalysts systems. In the course of developing Z-N catalysts, the ED constitutes a key component of the content and represents a significant area of future research. In this review, we introduced a concise overview of the functions of IEDs in the generations of Z-N catalyst systems and the widely used IED types (A total of 11 different types of IEDs are encompassed within this study) that have been developed so far. In addition, we focused on the coordination modes of different IEDs in the MgCl-supported Z-N catalyst system and analyzed the effects of different types of IEDs on the PP isotacticity, regioselectivity, hydrogen sensitivity, and briefly introduced the application of environmentally friendly rosinate and salicylate IEDs.
在齐格勒-纳塔(Z-N)催化中,电子给体(ED)分为内给电子体(IED)和外给电子体(EED),在典型的工业Z-N催化过程中,IED和EED都是提高催化活性和调节聚烯烃材料立构规整性的不可或缺的组分。随着对电子给体的深入研究,在过去几十年里Z-N催化剂的性能不断取得进步。聚丙烯(PP)作为一种通用聚烯烃材料,尤其是等规聚丙烯(iPP),通过使用各种由内给电子体和外给电子体辅助的Z-N催化剂体系,年产量达数十亿磅。在Z-N催化剂的开发过程中,电子给体是其关键组成部分,也是未来研究的一个重要领域。在本综述中,我们简要介绍了内给电子体在Z-N催化剂体系 generations中的功能,以及迄今为止已开发的广泛使用的内给电子体类型(本研究共涵盖11种不同类型的内给电子体)。此外,我们重点研究了不同内给电子体在MgCl负载的Z-N催化剂体系中的配位模式,并分析了不同类型的内给电子体对等规聚丙烯的等规度、区域选择性、氢敏感性的影响,并简要介绍了环境友好型松香酸酯和水杨酸酯内给电子体的应用。 (注:原文中“generations”可能有误,推测应为“generations”,若有误请根据实际情况调整翻译)