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Diels-Alder Trapping of Photochemically Generated o-Quinodimethane Intermediates: An Alternative Route to Photocured Polymer Film Development

机译:光化学生成的邻二叠纪甲烷中间体的Diels-Alder陷印:光固化聚合物薄膜显影的替代途径

摘要

Photolysis of o-methylphenyl ketones generates bis-o-quinodimethane intermediates that can be trapped in situ by dienophiles through Diels-Alder cycloadditions. This well-known photochemical process is applied to a series of six new photoreactive monomers containing bis-(o-methylphenyl ketone) functionalities combined with diacrylate and triacrylate ester monomers for the development of acrylic ester copolymer blends. Irradiation of cyclohexanone solutions of the bis-(o-methylphenyl ketone)s and acrylate esters produce thin polymer films. Solid state 13C NMR data indicated 47- 100% reaction of the bis-(o-methylphenyl ketone)s, depending on experimental conditions, to yield the desired products. DSC and TGA analyses were performed to determine the glass transition temperature, T,, and onset of decomposition, Td, of the resulting polymer films. A statistical Design of Experiments approach was used to obtain a systematic understanding of the effects of experimental variables on the extent of polymerization and the final polymer properties.
机译:邻甲基苯酮的光解会生成双邻邻二甲苯甲烷中间体,该中间体可以被亲二烯体通过Diels-Alder环加成反应原位捕获。此众所周知的光化学过程被应用于一系列六种新的含有双(邻甲基苯基酮)官能团的光反应性单体,并与二丙烯酸酯和三丙烯酸酯单体结合使用,以开发丙烯酸酯共聚物共混物。双-(邻-甲基苯基酮)和丙烯酸酯的环己酮溶液的辐照产生聚合物薄膜。固态13 C NMR数据表明,根据实验条件,双-(邻-甲基苯基酮)的反应为47-100%,得到所需的产物。进行DSC和TGA分析以确定所得聚合物膜的玻璃化转变温度T和分解开始Td。使用统计设计的实验方法来获得对实验变量对聚合程度和最终聚合物性能的影响的系统理解。

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