Mahmood Qaiser, Sun Wen-Hua
Key Laboratory of Engineering Plastics and Beijing National Laboratory for Molecular Science, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, People's Republic of China.
CAS Research/Education Center for Excellence in Molecular Sciences, University of Chinese Academy of Sciences, Beijing 100049, People's Republic of China.
R Soc Open Sci. 2018 Jul 25;5(7):180367. doi: 10.1098/rsos.180367. eCollection 2018 Jul.
The physical properties and end applications of polyolefin materials are defined by their chain architectures and topologies. These properties can, in part, be controlled by a judicious choice of the steric and electronic properties of the catalyst and, in particular, the ligand framework. One major achievement in this field is the discovery of thermoplastic polyolefin elastomers that combine the processing and recyclable characteristics of thermoplastics with the flexibility and ductility of elastomers. These polymers are highly sought after as alternative materials to thermoset elastomers. In this perspective, works in the literature related to the development of nickel catalysts as well as their implementations for the synthesis of polyolefin elastomers are summarized in detail. Throughout the perspective, attention has been focused on developing the relationship between catalyst structure and performance, on strategies for the synthesis of polyolefin elastomer using nickel catalysts, on properties of the resultant polyolefin, such as degree of branching and crystallinity, as well as on their effects on mechanical properties. The future perspective regarding the most recent developments in single-step production of polyethylene elastomers will also be presented.
聚烯烃材料的物理性质和最终应用由其链结构和拓扑结构决定。这些性质部分可通过明智地选择催化剂的空间和电子性质,特别是配体骨架来控制。该领域的一项主要成就是发现了热塑性聚烯烃弹性体,它将热塑性塑料的加工和可回收特性与弹性体的柔韧性和延展性结合在一起。这些聚合物作为热固性弹性体的替代材料备受追捧。从这个角度出发,详细总结了文献中与镍催化剂的开发及其在聚烯烃弹性体合成中的应用相关的工作。在整个综述中,重点关注了催化剂结构与性能之间的关系、使用镍催化剂合成聚烯烃弹性体的策略、所得聚烯烃的性质(如支化度和结晶度)以及它们对机械性能的影响。还将介绍关于聚乙烯弹性体一步法生产最新进展的未来展望。