位阻效应
催化作用
化学
乙烯
聚合
高分子化学
支化(高分子化学)
配体(生物化学)
热稳定性
镍
聚乙烯
电子效应
二亚胺
光化学
有机化学
聚合物
受体
生物化学
作者
Hui Wang,Xinyue Wu,Mingjun Ji,Shengyu Dai
摘要
ABSTRACT The effects of ligand distal substituents on nickel(II)‐catalyzed ethylene polymerization were investigated using bulky α‐diimine Ni(II) catalysts ( Ni1–Ni4 ). para ‐Methoxy‐substituted catalysts ( Ni2–Ni3 ) produced polyethylene with broadened molecular weight distributions and higher melting temperatures (64°C–109°C) compared to unsubstituted analogues, suggesting potential interactions between the methoxy groups and the cocatalyst. However, the steric influence of adjacent methyl groups in Ni2 may partially suppress these interactions, as evidenced by its higher branching density. Replacing methyl backbones with acenaphthyl ( Ni4 ) reduced steric inhibition, leading to improved catalytic activity and thermal stability. Temperature‐dependent studies demonstrated that distal substituents enhance the thermal stability of these diarylmethyl‐based Ni(II) catalyst's activity. A proposed mechanism involving Al–O (alkyaluminium‐methoxy group) interactions suggests that para‐methoxy groups increase axial steric hindrance, slowing chain propagation and broadening molecular weight distribution.
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