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Relationship of structure and properties of phosphine-containing catalysts in reactions with epoxy and phenol compounds

机译:含膦催化剂与环氧和酚化合物反应的结构与性能的关系

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摘要

Triphenylphosphine (TPP) derivatives, which are catalysts of reactions with epoxy and phenol compounds, were investigated regarding the melting behavior and catalyst effect. The melting behavior was measured by differential scanning calorimetry (DSC), and the relationship of melting behavior (melting point and heat of fusion) and chemical structure were discussed using the heat of formation calculated by a semiempirical method. Two schemes are proposed for the reactions with epoxy and phenol compounds: a complex formation scheme, and an ionic scheme. The ionic scheme was the predominant route in the reactions with epoxy and phenol compounds in the bulk state at high temperature (180degreesC) on the basis of DSC measurements of the curing reaction and the semiempirical calculation of the heat of formation of products and partial charge of the phosphine group in the TPP derivatives. Consequently, the reaction rate of epoxy and phenol compounds decreased by introducing electron-withdrawing substituents such as chlorine in the basic catalyst. (C) 2002 Wiley Periodicals, Inc. [References: 17]
机译:研究了三苯膦(TPP)衍生物,它是与环氧和酚化合物反应的催化剂,其熔融行为和催化剂效果均得到了研究。通过差示扫描量热法(DSC)测量熔融行为,并使用通过半经验方法计算的形成热讨论熔融行为(熔点和熔融热)与化学结构的关系。对于与环氧和酚化合物的反应,提出了两种方案:络合物形成方案和离子方案。离子方案是在高温下(180°C)与本体状态下的环氧化合物和酚类化合物反应的主要途径,这是基于固化反应的DSC测量以及产物形成热和部分电荷的半经验计算得出的。 TPP衍生物中的膦基。因此,通过在碱性催化剂中引入吸电子取代基例如氯,降低了环氧化合物与苯酚化合物的反应速率。 (C)2002 Wiley Periodicals,Inc. [参考:17]

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