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首页> 外文期刊>Macromolecules >Copolymerization of Propylene and Polar Allyl Monomer with Zirconocene/Methylaluminoxane Catalyst: Catalytic Synthesis of Amino-Terminated Isotactic Polypropylene
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Copolymerization of Propylene and Polar Allyl Monomer with Zirconocene/Methylaluminoxane Catalyst: Catalytic Synthesis of Amino-Terminated Isotactic Polypropylene

机译:丙烯和极性烯丙基单体与锆茂/甲基铝氧烷催化剂的共聚合:氨基端基等规聚丙烯的催化合成

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摘要

The copolymerizations of propylene with allyl monomers carrying alcohol or amine were conducted by the rac-dimethylsilylbis(l-indenyl)zirconium dichloride/methylaluminoxane catalyst system.The allyl monomers were pretreated by alkylaluminum before the polymerization.Although the efficiency of the introduction of allyl alcohol-based comonomer was extraordinary low (0.04-0.08 mol % in polymer),the trimethylaluminum-treated allylamine was found to be introduced more effectively (0.65 mol % in polymer).The ~(13)C NMR study indicated that the position of allylamine unit in the copolymer was influenced by the kind of alkylaluminum used at the polymerization.In the presence of trimethylaluminum,the terminally animated polypropylene was obtained ([amino end polymer]/[whole polymer]=0.83).In the presence of triisobutylaluminum,however,the allylamine unit is located both on the main chain and at the chain end.The end-aminated polymer was probably obtained due to the formation of dormant species after the insertion of the comonomer followed by the chain transfer to alkylaluminum.
机译:丙烯与载有醇或胺的烯丙基单体的共聚反应是通过外消旋-二甲基甲硅烷基双(1-茚基)二氯化锆/甲基铝氧烷催化剂体系进行的,烯丙基单体在聚合前用烷基铝进行预处理,尽管引入烯丙醇的效率很高基共聚单体非常低(聚合物中为0.04-0.08 mol%),发现三甲基铝处理的烯丙胺被更有效地引入(聚合物中为0.65 mol%)。〜(13)C NMR研究表明烯丙胺的位置聚合中使用的烷基铝的种类会影响共聚物中的单元数。在三甲基铝的存在下,可以得到末端活化的聚丙烯([氨基末端聚合物] / [整个聚合物] = 0.83)。但是,在三异丁基铝的存在下烯丙基胺单元位于主链和链末端。末端胺化的聚合物可能是由于形成了休眠物种而获得的共聚单体插入后,随后链转移至烷基铝。

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