Two different, on the same silica supported metallocene catalysts, activated by various trialkylaluminums – a kinetic and morphological study as well as an experimental investigation for building stereoblock polymers

C. Przybyla, G. Fink
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引用次数: 48

Abstract

The main focus of this study is the development of new polypropylene macromolecules. The simultaneous supporting of two metallocenes that manufacture polyolefins of different tacticity on the same silica should yield stereoblock polymers of polypropylene, if a chain transfer between the active species takes place. As chain transfer agents two aluminumalkyls (cocatalyst and scavenger) of distinct steric demands were chosen. Two catalyst systems were studied. The first was based on a PQ-silica/MAO on which the two metallocene catalysts rac-Me2Si[Ind]2ZrCl2 (isotactic working species) and i-Pr[FluCp]-ZrCl2 (syndiotactic working species) were fixed. For the second the components rac-Me2Si[IndR2]2ZrCl2 and i-Pr[FluCp]-ZrCl2 were fixed to a Grace Silica/MAO-support. The influence of the type of silica, of MAO-content, of the kind of scavenger and of the supporting procedure on the microstructure, the kinetics and the morphology of the product were investigated.

两种不同的,在相同的二氧化硅负载的茂金属催化剂上,由不同的三烷基铝活化-动力学和形态学研究以及构建立体嵌段聚合物的实验研究
本研究的重点是开发新型聚丙烯大分子。如果在活性组分之间发生链转移,在同一硅石上同时支撑两种金属茂烯,可产生具有不同弹性的聚烯烃,从而产生聚丙烯的立体嵌段聚合物。选择了两种立体要求不同的铝烷基(助催化剂和清除剂)作为链转移剂。研究了两种催化剂体系。其次,元件rac-Me2Si[IndR2]2ZrCl2和i-Pr[FluCp]-ZrCl2被固定在Grace Silica/ mao支架上。考察了二氧化硅的种类、mao的含量、清除剂的种类和支撑工艺对产物微观结构、动力学和形貌的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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