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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Design of new styrene enriched polyethylenes via coordination copolymerization of ethylene with mono- or alpha,omega-difunctional polystyrene macromonomers
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Design of new styrene enriched polyethylenes via coordination copolymerization of ethylene with mono- or alpha,omega-difunctional polystyrene macromonomers

机译:通过乙烯与单或α,ω-双官能聚苯乙烯大单体的配位共聚设计新型富苯乙烯的聚乙烯

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omega-Allyl,omega-undecenyl and alpha,omega-undecenyl polystyrene macromonomers,well defined in molar mass and functionality,were synthesized via anionic polymerization.Their coordination copolymerization with ethylene with a cationic alpha-diimine palladium catalyst [(ArN=C(Me)-C(Me)=NAr)Pd(CH_2)_3(COOMe)]+BAr_4~(/-),(Ar=2,6-iPr_2-C_6H_3 and Ar'=3,5-(CF_3)_2-C_6H_3) affords access to a new type of graft copolymers constituted of a polyethylene backbone and polystyrene grafts.It was shown that the environment of the terminal double bond of the PS macromonomers has a huge influence on the polymerization behavior.Indeed,an undecenyl end-group is more reactive than an allyl end-group.The copolymerization of ethylene with alpha,omega-undecenyl polystyrene macromonomers lead to cross-linking for long polymerization time (18 h at 25 deg C).The influence of several parameters (polymerization temperature,ethylene pressure,concentration) on molar masses and macromonomer incorporation yield was also investigated.Macromonomers having the lowest molar masses were the most reactive.The molar mass of the copolymer increased with ethylene pressure.As expected with such a chain walking catalyst,the copolymers presented moderately branched to highly branched structures depending on the ethylene pressure,like for the homopolymerization of ethylene.Finally,rheological investigations of the copolymers showed that a few percentage of polystyrene incorporation can change drastically the mechanical properties of the materials.
机译:通过阴离子聚合合成了摩尔质量和官能度明确定义的ω-烯丙基,ω-十一碳烯基和α,ω-十一碳烯基聚苯乙烯大分子单体。它们与乙烯和阳离子α-二亚胺钯催化剂进行配位共聚合[[(ArN = C(Me )-C(Me)= NAr)Pd(CH_2)_3(COOMe)] + BAr_4〜(/-),(Ar = 2,6-iPr_2-C_6H_3和Ar'= 3,5-(CF_3)_2-C_6H_3 )提供了一种由聚乙烯主链和聚苯乙烯接枝组成的新型接枝共聚物。研究表明,PS大分子单体的末端双键的环境对聚合行为有很大的影响。实际上,十一碳烯基端基乙烯与α,ω-十一碳烯基聚苯乙烯大分子单体的共聚导致交联,从而延长了聚合时间(在25摄氏度下18 h)。聚合温度,乙烯等几个参数的影响压力,浓度)对摩尔质量和大分子单体的掺入率是具有最低摩尔质量的大分子单体是最活泼的。共聚物的摩尔质量随着乙烯压力的增加而增加。正如这种链行走催化剂所预期的那样,取决于乙烯压力,共聚物呈现中等支化为高度支化的结构,例如最后,对共聚物的流变学研究表明,少量聚苯乙烯的掺入会极大地改变材料的机械性能。

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