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Aluminum Containing Dendrimeric Silica Nanoparticles as Promising Metallocene Catalyst Supports for Ethylene Polymerization

机译:含铝的树枝状二氧化硅纳米粒子作为乙烯聚合的有前途的茂金属催化剂载体

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Several aluminum containing dendrimeric silica nanospheres, DSAl materials, were prepared using different synthesis and post-synthetic procedures. These materials were used for the immobilization of Cp2ZrCl2 via direct impregnation. The support materials were rigorously characterized by TEM, N-2 adsorption, FTIR (using pyridine as probe molecule) and SS-NMR to assess their morphological, textural and surface acidic properties. Supported catalysts were tested in ethylene homopolymerization using methylaluminoxane (MAO) as co-catalyst and scavenger. The relationships between the types and strength of acid sites, as well as the textural and morphological parameters of DSAl materials with the behavior of catalytic systems are explored in this work. The results analyzed in this paper confirm the importance that support surface acidity plays in the formation of the active species for ethylene polymerization and in its activity without neglecting the contribution of support textural properties as well.
机译:使用不同的合成和合成后手术制备几种含含铝的树枝状二聚体二氧化硅纳米体DSAL材料。这些材料用于通过直接浸渍固定Cp2ZrCl2。通过TEM,N-2吸附,FTIR(使用吡啶作为探针分子)和SS-NMR来严格地表征载体材料,以评估它们的形态学,纹理和表面酸性特性。使用甲基铝氧烷(MAO)作为助催化剂和清除剂,在乙烯均聚物中测试负载的催化剂。在这项工作中探讨了酸性部位类型和强度与酸性物质类型的关系,以及DSAL材料的睾丸形态学参数。本文分析的结果证实了支撑表面酸度在形成活性物质的基础酸度和其活性的重要性的重要性,而不会忽视支持纹理性质的贡献。

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