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Organic Nanoparticles with Polypropyleneoxide Chains as Support for Metallocene Catalysts: Ethylene Homopolymerization and Ethylene/α-olefin Copolymerization

机译:具有聚环氧丙烷链作为金属茂催化剂载体的有机纳米粒子:乙烯均聚和乙烯/α-烯烃共聚

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摘要

Novel organic nanoparticles functionalized with nucleophilic polypropyleneoxide (PPO) chains on their surfaces for supporting metallocene catalysts in heterogeneous olefin polymerization are presented. The nanoparticles (60–100 nm) were obtained by miniemulsion polymerization of styrene, divinylbenzene and PPO functionalized styrene. It is demonstrated that Me2Si(2MeBenzlnd)2ZrCl2/MAO supported on these nanoparticles is suitable for the homopolymerization of ethylene, resulting in excellent product morphologies and high activities. lt is shown that by varying the MAO/Zr ratios and Zr concentrations the activities and productivities of the catalysts as well as the qualities of the polyethylene products can be tuned. These new supported catalysts are also suitable for the copolymerization of ethylene with several comonomers (1-hexene, 1-octene, 1-decene or norbornene). As the obtained product properties like crystallinity, melting temperature or bulk density match the results of silica supported systems, these organic nanoparticles can be considered as alternative carriers in comparison to the established inorganic ones.
机译:提出了新型的有机纳米颗粒,在其表面上用亲核性聚环氧丙烷(PPO)链进行了功能化,以支持多相烯烃聚合中的茂金属催化剂。通过苯乙烯,二乙烯基苯和PPO官能化苯乙烯的细乳液聚合获得纳米颗粒(60–100 nm)。结果表明,负载在这些纳米粒子上的Me2 Si(2MeBenzlnd)2 ZrCl2 / MAO适于乙烯的均聚,具有优异的产物形态和较高的活性。结果表明,通过改变MAO / Zr比例和Zr浓度,可以调节催化剂的活性和生产率以及聚乙烯产物的质量。这些新型的载体催化剂也适用于乙烯与几种共聚单体(1-己烯,1-辛烯,1-癸烯或降冰片烯)的共聚。由于获得的产品性质(如结晶度,熔融温度或堆积密度)与二氧化硅载体体系的结果相匹配,因此与已建立的无机纳米颗粒相比,这些有机纳米颗粒可以视为替代载体。

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