聚苯乙烯
共聚物
苯乙烯
单体
聚合
溶剂
高分子化学
材料科学
凝胶渗透色谱法
氯化物
己烷
摩尔质量分布
氯乙烯
核化学
聚合物
化学
有机化学
复合材料
冶金
作者
Shucheng Xu,Ke Yang,Qiang Liu,Hui Li,Hao Zhang,Tao Zhuang,Shouke Yan,Junwei Ding
摘要
Abstract A cost‐effective strategy has been developed for the synthesis of polystyrene‐polyisobutylene‐polystyrene (PS‐PIB‐PS) triblock copolymer (SIBS) with relative narrow molecular weight distribution (MWD) via the addition of Ti(O i Pr) 4 . First, the controlled polymerization of styrene (St) was achieved by using TMPCl/TiCl 4 /Ti(O i Pr) 4 initiating system from −80 to −50°C in a cost‐effective solvent mixture n‐Hexane/CH 2 Cl 2 (v/v = 6/4). The –O i Pr group was present in the form TiCl 3 (O i Pr) for TiCl 4 /Ti(O i Pr) 4 ratio more than 3/1 and moderated the lifetime of the growing PS cation. Subsequently, Ti(O i Pr) 4 was added to the living charge of PIB initiated by initiator 1,4‐dicumyl chloride (DCC), followed by the addition of styrene monomer. The success of this developed synthesis methodology was confirmed by comparing the findings from GPC (Gel permeation chromatography) traces with and without the addition of Ti(O i Pr) 4 . SIBS with nearly 30% weight content of PS (SIBS30) was successfully obtained with an optimally narrow MWD of 1.49 at −80°C by employing the TiCl 4 /Ti(O i Pr) 4 ratio of 6/1. Interestingly, SIBS30 with a very narrow PDI of 1.22 could be successfully synthetized at an elevated temperature of −60°C.
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