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Redox initiated free radical polymerization of 4-methylstyrene

机译:氧化还原引发的4-甲基苯乙烯的自由基聚合

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摘要

Studies of the thermally initiated polymerization of 4-methylstyrene using alkylperoxide in conjunction with cobalt and tertiary amine catalysts are reported. Addition of cobalt salts leads to a facile low temperature initiation of the polymerization process. The polymerization process was investigated using differential scanning calorimetry [DSC] and vibrating probe rheological measurements. Color changes which occur when the cobalt complex and peroxide are combined were studied using UV-visible spectroscopy. The kinetics of polymerization was investigated using two different cobalt complexes. The initiation step in the polymerization is the conversion of the cobalt (II) to cobalt (III). The presence of the tertiary amine does not affect the oxidation state of the cobalt complex. The cobalt (III) complex gives a better rate of conversion than the cobalt (II) complex. The polymerization process is discussed in terms of redox reaction between the cobalt complex and the alkyperoxide. At low temperatures, the rate of conversion obeys simple Arrhenius kinetics. At higher temperatures the effects of gelation and catalysts inhibition influence the polymerization process. The polymerization process is sensitive to the level of available oxygen during the initiation step and inhibition by aldehyde is observed.
机译:报道了使用烷基过氧化物与钴和叔胺催化剂一起对4-甲基苯乙烯进行热引发聚合的研究。钴盐的添加导致聚合过程的容易的低温引发。使用差示扫描量热法[DSC]和振动探针流变学测量研究了聚合过程。使用紫外可见光谱研究了钴配合物和过氧化物结合时发生的颜色变化。使用两种不同的钴配合物研究了聚合动力学。聚合中的引发步骤是钴(II)向钴(III)的转化。叔胺的存在不影响钴配合物的氧化态。钴(III)配合物比钴(II)配合物具有更好的转化率。根据钴配合物与烷氧基过氧化物之间的氧化还原反应来讨论聚合过程。在低温下,转化率遵循简单的Arrhenius动力学。在较高温度下,胶凝作用和催化剂抑制作用影响聚合过程。聚合过程对引发步骤中的可用氧水平敏感,并观察到醛的抑制作用。

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