遥爪聚合物
高分子化学
分散性
低聚物
催化作用
聚合物
复分解
化学
天然橡胶
链式转移
共聚物
无环二烯复分解
格拉布催化剂
“结束”组
材料科学
有机化学
聚合
自由基聚合
作者
Guangwei Hu,Shaohui Lin,Boxin Zhao,Qinmin Pan
摘要
Abstract Metathesis degradation and functionalization of natural rubber (NR) were conducted with 1‐hexene, 1‐octene, 1‐decene, 1‐dodecene, trans ‐stilbene, and 4,4′‐dibromo‐ trans ‐stilbene as chain transfer agents (CTAs) in presence of Grubbs 2nd generation catalyst to generate NR‐based telechelic oligomers that had been a long‐lasting challenge due to the structure and compositions of NR with various impurities. Orthogonal experiments were applied and the effects of the CTA type, CTA concentration, catalyst concentration, reaction time, and reaction temperature on the formation of telechelic oligomers were studied, indicating that the catalyst concentration was the major factor influencing the number average molecular weights ( M n ) and polymer dispersity index (PDI) of telechelic oligomers. The structures of the oligomers were characterized using 1 H NMR, 13 C NMR, and MALDI‐TOF‐MS, which confirmed the formation of the designed terminal groups. The results showed that well‐defined telechelic oligomers with a M n of a few thousand and a PDI around 1.6 were obtained, with potential applications in binder, lubricant and many other fields.
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