Chen Jian, Qu Shuzhang, Li Xinwei, Wei Yiming, Li Qian, Wen Zhao, Guo Zifang
Sinopec Key Laboratory of Research and Application of Medical and Hygienic Materials, SINOPEC (Beijing) Research Institute of Chemical Industry Co., Ltd., No. 14 Beisanhuan Donglu, Chao Yang District, Beijing 100013, China.
Polymers (Basel). 2025 Jan 1;17(1):95. doi: 10.3390/polym17010095.
Disentangled ultra-high-molecular-weight polyethylene (-UHMWPE) solves the problem of the difficult processing of traditional UHMWPE caused by entanglements between molecular chains. In this review, we look into the innovative realm of nascent disentangled UHMWPE, concentrating on the recent advances achieved through the in situ polymerization of ethylene by single-site catalysts. The effect of single-site catalysts and polymerization conditions on the molecular characteristics is discussed in detail from the perspective of mechanism and DFT calculations. The key factors to low entanglement are revealed, which have instructive implications for the development of new single-site catalytic systems that can generate -UHMWPE more efficiently and become closer to industrial production. The progress in the preparation for nascent -UHMWPE with homogeneous and heterogeneous single-site catalysts is systematically reviewed. Rheology and DSC can be used to characterize the degree of entanglement. High-modulus and high-strength biaxial films, tapes, and fibers are obtained by the solid-state processing of these nascent -UHMWPE.
解缠结超高分子量聚乙烯(-UHMWPE)解决了传统UHMWPE因分子链间缠结导致加工困难的问题。在本综述中,我们探究了初生解缠结UHMWPE的创新领域,重点关注通过单中心催化剂原位聚合乙烯所取得的最新进展。从机理和密度泛函理论计算的角度详细讨论了单中心催化剂和聚合条件对分子特性的影响。揭示了低缠结的关键因素,这对开发能够更高效地生成-UHMWPE并更接近工业化生产的新型单中心催化体系具有指导意义。系统综述了使用均相和非均相单中心催化剂制备初生-UHMWPE的进展。流变学和差示扫描量热法可用于表征缠结程度。通过对这些初生-UHMWPE进行固态加工可获得高模量和高强度的双轴薄膜、带材和纤维。