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Porous Organic Polymers-Supported Metallocene Catalysts for Ethylene/1-Hexene Copolymerization

机译:用于乙烯/ 1-己烯共聚合的多孔有机聚合物 - 负载型茂金属催化剂

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摘要

Porous organic polymers (POPs) have received much attention in adsorption, separation, and catalysis. In this paper, porous organic polymers with different pore structure were used as metallocene catalyst supports, and ethylene/1-hexene copolymerizations were conducted using the POPs-supported metallocene catalyst. The pore structure of the prepared POPs and the supported metallocene catalyst were characterized by nitrogen sorption porosimetry and non-local density functional theory simulation, and the molecular chain structure of the produced ethylene/1-hexene copolymers were investigated through gel permeation chromatography (GPC), IR analysis, differential scanning calorimetry (DSC), and temperature rising elution fractionation (TREF). The results show that the loading amount of active sites varied with different pore structures of the POP supports, and the active species scattered in different pore sizes had a moderate impact on the molecular chain growth and the molecular weight distribution. The IR, DSC, and TREF analysis revealedthat different branching degree, double bond content, and chemical composition distributions were detected from the molecular chain structure of the ethylene/α-olefin copolymers from different POPs and silica-supported metallocene catalysts, despite their similar IR, DSC, and TREF curves due to the same active species. Scanning electron microscopy (SEM) showed that porous ethylene/α-olefin copolymers with varied surface morphology were obtained from the POPs-supported metallocene catalysts with different pore structure.
机译:多孔有机聚合物(POPs)在吸附,分离和催化中得到了很多关注。本文使用具有不同孔结构的多孔有机聚合物作为茂金属催化剂载体,并使用受到污染物负载的茂金属催化剂进行乙烯/ 1-己烯共聚物。通过氮素吸附孔隙测定法和非局部密度函数理论模拟表征制备的孔和负载型茂金属催化剂的孔结构,并通过凝胶渗透色谱法(GPC)研究了所生产的乙烯/ 1-己烯共聚物的分子链结构,IR分析,差示扫描量热法(DSC)和温度上升洗脱分馏(TREF)。结果表明,随着POP载体的不同孔隙结构而变化的活性位点的装载量,散落在不同孔径尺寸的活性物质对分子链生长和分子量分布的抗冲击性适中。虽然它们相似的IR,IR,DSC和TREF分析显示出不同的支化度,双键含量和化学成分分布,从不同粉孔和二氧化硅载体的茂金属催化剂的分子链结构中检测到不同的分支度,双键含量和化学成分分布。 ,由于相同的活性物种,DSC和TREF曲线。扫描电子显微镜(SEM)显示,从具有不同孔结构的POPS负载的茂金属催化剂获得多孔乙烯/α-烯烃共聚物。

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