Wang Wenbing, Wang Quan, Zou Chen, Chen Changle
Key Laboratory of Precision and Intelligent Chemistry, Department of Polymer Science and Engineering, University of Science and Technology of China, Hefei 230026, China.
Precis Chem. 2024 Jan 11;2(2):63-69. doi: 10.1021/prechem.3c00103. eCollection 2024 Feb 26.
Ultra-high-molecular-weight polyethylene (UHMWPE) plays an important role in many important fields as engineering plastics. In this contribution, a precipitation polymerization strategy is developed by combination of highly active phosphino-phenolate nickel catalysts with polymer-insoluble solvent (heptane) to access UHMWPE ( up to 8.3 × 10 g mol) with good product morphology, free-flowing characteristics, and great mechanical properties. Compared with the academically commonly used aromatic solvent (toluene), the utilization of heptane offers simultaneous enhancement in important parameters including activity, polymer molecular weight, and catalyst thermal stability. This system can also generate polar functionalized UHMWPE with molecular weight of up to 1.6 × 10 g mol in the copolymerization of ethylene with polar comonomers. More importantly, this precipitation polymerization strategy is generally applicable to several representative transition metal catalyst systems, leading to UHMWPE synthesis with good product morphology control.
超高分子量聚乙烯(UHMWPE)作为工程塑料在许多重要领域发挥着重要作用。在本研究中,通过将高活性膦基酚盐镍催化剂与聚合物不溶性溶剂(庚烷)相结合,开发了一种沉淀聚合策略,以制备具有良好产品形态、自由流动特性和优异机械性能的超高分子量聚乙烯(高达8.3×10⁶ g/mol)。与学术上常用的芳烃溶剂(甲苯)相比,使用庚烷可同时提高包括活性、聚合物分子量和催化剂热稳定性在内的重要参数。该体系还能在乙烯与极性共聚单体的共聚反应中生成分子量高达1.6×10⁶ g/mol的极性官能化超高分子量聚乙烯。更重要的是,这种沉淀聚合策略普遍适用于几种代表性的过渡金属催化剂体系,能够实现对超高分子量聚乙烯合成产品形态的良好控制。