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Correlation of Microstructure, Rheological and Morphological Characteristics of Synthesized Polypropylene (PP) Reactor Blends Using Homogeneous Binary Metallocene Catalyst

机译:均相二元茂金属催化剂合成聚丙烯(PP)反应器共混物的微观结构,流变学和形态学特征的相关性

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A novel binary homogeneous catalyst system based on (I): rac -Me 2 Si(2-Me-4-PhIn) 2 ZrCl 2 and (II): (2-PhIn) 2 ZrCl 2 catalysts at various molar ratios was utilized for the synthesis of polypropylene (PP) reactor blends with bimodal molecular weight distribution (MWD). The results of gel permeation chromatography analyses revealed that the catalyst (I) was responsible for the production of i -PP with high molecular weight (MW) while the individual use of catalyst (II) led to the production of an elastomeric PP with relatively low MW. However, application of the binary catalyst system led to high MW bimodal MWD products being highly dependent on the catalysts’ molar ratios. Increasing the molar ratio of catalyst (II) to catalyst (I) resulted in a notable enhancement of the products’ complex viscosity due to the increased MW, a higher level of chains’ entanglements and formation of amorphous blocks along the polymer chains. All products exhibited a single relaxation that shifted towards longer times upon changing the catalysts’ molar ratios. Scanning electron microscopy results revealed that the fracture surface of the blends, synthesized by the binary catalyst system, became more heterogeneous in comparison with the products obtained by the individual use of the catalyst (I). The observed heterogeneity was found to increase by increasing the amount of catalyst (II). Such morphological change was further corroborated by the dynamic rheological data, indicating a promising correlation between the linear rheological results and the morphological features of the synthesized PP reactor blends.
机译:利用基于(I):rac -Me 2 Si(2-Me-​​4-PhIn)2 ZrCl 2和(II):(2-PhIn)2 ZrCl 2催化剂的各种摩尔比的新型二元均相催化剂体系用于合成具有双峰分子量分布(MWD)的聚丙烯(PP)反应器混合物。凝胶渗透色谱分析的结果表明,催化剂(I)负责生产高分子量(MW)的i -PP,而单独使用催化剂(II)则可以生产相对较低的弹性PP兆瓦但是,二元催化剂体系的应用导致高分子量双峰MWD产品高度依赖于催化剂的摩尔比。催化剂(II)与催化剂(I)的摩尔比的增加,由于分子量的增加,链的缠结水平增加以及沿聚合物链形成无定形嵌段,导致产物的复数粘度显着提高。所有产品均表现出单一的弛豫,在改变催化剂的摩尔比时,弛豫时间会延长。扫描电子显微镜结果表明,与单独使用催化剂(I)获得的产物相比,由二元催化剂体系合成的共混物的断裂表面变得更加不均匀。发现观察到的异质性通过增加催化剂(II)的量而增加。动态流变数据进一步证实了这种形态变化,表明线性流变结果与合成PP反应器混合物的形态特征之间有希望的相关性。

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