首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Improving microisotacticity of Ziegler-Natta catalyzed polypropylene by using triethylaluminum/triisobutylaluminum mixtures as cocatalyst
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Improving microisotacticity of Ziegler-Natta catalyzed polypropylene by using triethylaluminum/triisobutylaluminum mixtures as cocatalyst

机译:三乙基铝/三异丁基铝混合物作为助催化剂,提高齐格勒-纳塔催化的聚丙烯的微观等规度

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摘要

Propylene was polymerized with TiCl4/Di/MgCl2 catalyst and cocatalysts containing triethylaluminum (TEA) and triisobutylaluminum (TiBA) in the presence of Ph2Si(OMe)(2) (external donor) and hydrogen. Chain structure of the formed polypropylene (PP) was characterized by temperature-rise elution fractionation (TREF) combined with DSC and C-13 NMR analysis of the main fractions. Increasing the amount of TiBA in cocatalyst leads to decrease of isotactic index of PP, meanwhile the microisotacticity of the main TREF fractions of PP was enhanced. PP produced with the catalyst activated by a 50/50 TEA/TiBA mixture has the same content of highly isotactic chains as PP produced with the TEA activated catalyst, but main TREF fractions of the former has higher microisotacticity than the later. Fast alkyl exchanges in TEA/TiBA mixtures are found by H-1 NMR analysis of the mixtures. By analyzing alkanes released from hydrolyzed catalysts that have been treated with the cocatalyst, allcylation power of TEA/TiBA mixture was found to decrease with increasing its TiBA content. The effects of TEA/TiBA mixture in propylene polymerization is explained by the weaker alkylation power and lower Lewis acidity of the mixed alkylaluminums than pure TEA. Decrease in the alkylation power leads to reduction of active centers with the highest stereospecificity, meanwhile decrease in Lewis acidity intensified the role of De in enhancing stereospecificity of different active centers. When the amount of TiBA in TEA/TiBA mixture falls in a suitable range, the later effect becomes dominant, and evident improvement in microisotacticity of PP can be achieved. (C) 2014 Elsevier Ltd. All rights reserved.
机译:将丙烯与TiCl4 / Di / MgCl2催化剂以及含三乙基铝(TEA)和三异丁基铝(TiBA)的助催化剂在Ph2Si(OMe)(2)(外部供体)和氢气存在下聚合。形成的聚丙烯(PP)的链结构通过温升洗脱分离(TREF)结合主要组分的DSC和C-13 NMR分析进行表征。助催化剂中TiBA含量的增加导致PP的等规指数降低,同时PP的主要TREF组分的微观等规度增强。用50/50 TEA / TiBA混合物活化的催化剂制得的PP与用​​TEA活化的催化剂制得的PP具有相同的高全同立构链含量,但前者的主要TREF组分比后者具有更高的微全同规整度。通过混合物的H-1 NMR分析发现TEA / TiBA混合物中的烷基快速交换。通过分析由助催化剂处理过的水解催化剂释放的烷烃,发现TEA / TiBA混合物的烯丙基化能力随TiBA含量的增加而降低。与纯TEA相比,混合烷基铝的烷基化能力弱,路易斯酸度低,解释了TEA / TiBA混合物在丙烯聚合中的作用。烷基化能力的降低导致具有最高立体特异性的活性中心的减少,同时路易斯酸度的降低增强了De在增强不同活性中心的立体特异性中的作用。当TEA / TiBA混合物中的TiBA的量在合适的范围内时,后一种作用变得占优势,并且可以实现PP的微同规度的明显改善。 (C)2014 Elsevier Ltd.保留所有权利。

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