首页> 外文期刊>Journal of Applied Polymer Science >PROPENE POLYMERIZATION WITH MGCL2-SUPPORTED TICL4/DIOCTYLPHTHALATE CATALYST .3. EFFECTS OF POLYMERIZATION CONDITIONS ON MOLECULAR WEIGHTS AND MOLECULAR WEIGHT DISTRIBUTION
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PROPENE POLYMERIZATION WITH MGCL2-SUPPORTED TICL4/DIOCTYLPHTHALATE CATALYST .3. EFFECTS OF POLYMERIZATION CONDITIONS ON MOLECULAR WEIGHTS AND MOLECULAR WEIGHT DISTRIBUTION

机译:MGCL2负载的TICL4 /邻苯二甲酸二乙酯催化剂对丙烯的聚合3。聚合条件对分子量和分子量分布的影响

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In propene polymerization over the MgCl2-supported TiCl4/dioctylphthalate (DOP) catalyst, the weight- and number-average molecular weights and the molecular weight distribution (MWD) of polypropene products and of the isotactic and atactic polymer portions were studied. The average molecular weights and MWD were found to be independent of time. The isotactic polymer had higher molecular weight and broader distribution than the atactic portion by almost an order of magnitude. An increase in temperature and cocatalyst/catalyst ratio resulted in lowering molecular weight due to increasing transfer reaction. Alkyl aluminum was used as a cocatalyst, and the molecular weight did not vary significantly with different alkyl groups. Of the three external bases studied, 2,2,6,6-tetramethyl piperidine (TMPIP), dimethoxydiphenyl silane (DMDPS), and t-butylmethyl ether (TBME), the addition of a small amount of one of the first two bases caused a substantial increase in both molecular weight and polydispersity of the isotactic polymer. Those increases leveled off quickly with increasing amounts of the external base. On the other hand, both average molecular weights and polydispersity of the atactic polymer decreased with a net increase in the molecular weight of the whole polymer. TBME, however, has no significant effect on either molecular weight or MWD. These effects are discussed in the context of the roles of the external base in propene polymerization. (C) 1995 John Wiley & Sons, Inc. [References: 23]
机译:在MgCl2负载的TiCl4 /邻苯二甲酸二辛酯(DOP)催化剂上进行丙烯聚合时,研究了聚丙烯产物以及等规和无规聚合物部分的重均分子量和数均分子量以及分子量分布(MWD)。发现平均分子量和MWD与时间无关。等规聚合物比无规部分具有更高的分子量和更宽的分布,几乎高出一个数量级。由于转移反应增加,温度和助催化剂/催化剂比的增加导致分子量降低。烷基铝用作助催化剂,并且分子量随烷基不同而无明显变化。在研究的三个外部碱中,2,2,6,6-四甲基哌啶(TMPIP),二甲氧基二苯基硅烷(DMDPS)和叔丁基甲基醚(TBME)中,添加了少量的前两个碱之一等规聚合物的分子量和多分散性都大大增加。随着外部基础数量的增加,这些增长迅速趋于平稳。另一方面,无规聚合物的平均分子量和多分散性均随着整个聚合物分子量的净增加而降低。但是,TBME对分子量或MWD均无明显影响。在外部碱在丙烯聚合中的作用的背景下讨论了这些作用。 (C)1995 John Wiley&Sons,Inc. [参考:23]

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