Wen Zhao, Wu Changjiang, Chen Jian, Qu Shuzhang, Li Xinwei, Wang Wei
SINOPEC (Beijing) Research Institute of Chemical Industry Co., Ltd., No. 14 Beisanhuan Donglu, Chao Yang District, Beijing 100013, China.
Polymers (Basel). 2024 Feb 1;16(3):406. doi: 10.3390/polym16030406.
The development of catalysts has significantly advanced the progress of polyolefin materials. In particular, group 4 (Ti, Zr, Hf) non-metallocene catalysts ligated with [N,N] bidentate ligand(s) have garnered increasing attention in the field of olefin polymerization due to their structurally stability and exceptional polymerization behaviors. Ligands containing nitrogen donors are diverse and at the core of many highly active catalysts. They mainly include amidine, guanidinato, diamine, and various N-heterocyclic ligands, which can be used to obtain a series of new polyolefin materials, such as ultrahigh molecular weight polyethylene (UHWMPE), olefin copolymers (ethylene/norbornene and ethylene/α-olefin) with high incorporations, and high isotactic or syndiotactic polypropylene after coordination with group 4 metals and activation by cocatalysts. Herein, we focus on the advancements and applications of this field over the past two decades, and introduce the catalyst precursors with [N,N] ligand(s), involving the effects of ligand structure, cocatalyst selection, and polymerization conditions on the catalytic activity and polymer properties.
催化剂的发展显著推动了聚烯烃材料的进步。特别是,与[N,N]双齿配体连接的第4族(Ti、Zr、Hf)非茂金属催化剂,因其结构稳定性和优异的聚合行为,在烯烃聚合领域受到越来越多的关注。含氮供体的配体种类繁多,是许多高活性催化剂的核心。它们主要包括脒、胍基、二胺和各种N-杂环配体,与第4族金属配位并经助催化剂活化后,可用于制备一系列新型聚烯烃材料,如超高分子量聚乙烯(UHWMPE)、高插入率的烯烃共聚物(乙烯/降冰片烯和乙烯/α-烯烃)以及高等规或间规聚丙烯。在此,我们聚焦于该领域在过去二十年的进展与应用,并介绍含[N,N]配体的催化剂前体,包括配体结构、助催化剂选择和聚合条件对催化活性及聚合物性能的影响。