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研究芳香族聚苯并恶嗪聚合机理的引发及网络形成过程

Examining the Initiation of the Polymerization Mechanism and Network Development in Aromatic Polybenzoxazines.

作者信息

Hamerton Ian, McNamara Lisa T, Howlin Brendan J, Smith Paul A, Cross Paul, Ward Steven

机构信息

Department of Chemistry and Department of Mechanical Engineering Sciences, Faculty of Engineering and Physical Sciences, University of Surrey , Guildford, Surrey GU2 7XH, U.K.

出版信息

Macromolecules. 2013 Jul 9;46(13):5117-5132. doi: 10.1021/ma401014h. Epub 2013 Jun 26.

Abstract

Three bis-benzoxazine monomers based on the aniline derivatives of bisphenol A (BA-a), bisphenol F (BF-a), and 3,3'-thiodiphenol (BT-a) are examined using a variety of spectroscopic, chromatographic, and thermomechanical techniques. The effect on the polymerization of the monomers is compared using two common compounds, 3,3'-thiodiphenol (TDP) and 3,3'-thiodipropionic acid (TDA), at a variety of loadings. It is found that the diacid has a greater effect on reducing the onset of polymerization and increasing cross-link density and for a given benzoxazine. However, the addition of >5 wt % of the diacid had a detrimental effect on the cross-link density, , and thermal stability of the polymer. The kinetics of the polymerization of BA-a were found to be well described using an autocatalytic model for which values of = 1.64 and = 2.31 were obtained for the early and later stages of reaction (activation energy = 81 kJ/mol). Following recrystallization the same monomer yielded values = 1.89, = 0.89, and = 94 kJ/mol (confirming the influence of higher oligomers on reactivity). The choice of additive (in particular the magnitude of its p) appears to influence the nature of the network formation from a linear toward a more clusterlike growth mechanism.

摘要

使用各种光谱、色谱和热机械技术对基于双酚A(BA-a)、双酚F(BF-a)和3,3'-硫代二苯酚(BT-a)的苯胺衍生物的三种双苯并恶嗪单体进行了研究。使用两种常见化合物3,3'-硫代二苯酚(TDP)和3,3'-硫代二丙酸(TDA),在各种负载量下比较了它们对单体聚合的影响。结果发现,对于给定的苯并恶嗪,二酸对降低聚合起始温度和增加交联密度具有更大的影响。然而,二酸添加量>5 wt%对聚合物的交联密度和热稳定性有不利影响。发现BA-a的聚合动力学可以用自催化模型很好地描述,在反应的早期和后期阶段分别得到的值为 = 1.64和 = 2.31(活化能 = 81 kJ/mol)。重结晶后,相同的单体得到的值为 = 1.89、 = 0.89和 = 94 kJ/mol(证实了高级低聚物对反应性的影响)。添加剂的选择(特别是其p值的大小)似乎会影响网络形成的性质,从线性生长机制向更类似簇状的生长机制转变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1ab/3707310/d1f378ecad39/ma-2013-01014h_0001.jpg

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