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Statistical Ring Opening Metathesis Copolymerization of Norbornene and Cyclopentene by Grubbs’ 1st-Generation Catalyst

机译:Grubbs的第一代催化剂统计还原降冰片烯和环戊烯的开环易位共聚

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摘要

Statistical copolymers of norbornene (NBE) with cyclopentene (CP) were prepared by ring-opening metathesis polymerization, employing the 1st-generation Grubbs’ catalyst, in the presence or absence of triphenylphosphine, PPh3. The reactivity ratios were estimated using the Finemann-Ross, inverted Finemann-Ross, and Kelen-Tüdos graphical methods, along with the computer program COPOINT, which evaluates the parameters of binary copolymerizations from comonomer/copolymer composition data by integrating a given copolymerization equation in its differential form. Structural parameters of the copolymers were obtained by calculating the dyad sequence fractions and the mean sequence length, which were derived using the monomer reactivity ratios. The kinetics of thermal decomposition of the copolymers along with the respective homopolymers was studied by thermogravimetric analysis within the framework of the Ozawa-Flynn-Wall and Kissinger methodologies. Finally, the effect of triphenylphosphine on the kinetics of copolymerization, the reactivity ratios, and the kinetics of thermal decomposition were examined.
机译:降冰片烯(NBE)与环戊烯(CP)的统计共聚物是在存在或不存在三苯基膦PPh3的情况下,使用第一代Grubbs催化剂通过开环易位聚合反应制备的。使用Finemann-Ross,Finemann-Ross倒置和Kelen-Tüdos图形方法以及计算机程序COPOINT估算反应活性比,该程序通过将给定的共聚方程式积分到共聚单体/共聚物组成数据中来评估二元共聚的参数。其微分形式。共聚物的结构参数是通过计算使用单体反应率得出的二元体序列分数和平均序列长度而获得的。在Ozawa-Flynn-Wall和Kissinger方法论的框架内,通过热重分析研究了共聚物以及相应的均聚物的热分解动力学。最后,研究了三苯基膦对共聚动力学,反应率和热分解动力学的影响。

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