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Synthesis and Photoisomerization Properties of Polynorbornenes with Azobenzene Chromophores

机译:偶氮苯发色团对聚降冰片烯的合成及光异构化性能

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We successfully synthesized the addition-type polynorbonenes (PNB) exhibiting photochromic properties and excellent thermal stability. Three norbornene-based monomers with different azobenzene moiety (R=NO2, H,OCH3) were synthesized by transesterification method. The corresponding PNB copolymers were synthesized by transition metal-catalyzed addition polymerization method, and characterized by GPC, UV-Vis spectroscopy, NMR, and thermal analysis. For comparison of the photochromic properties depending on the rigidity of polymer backbone, we prepared the polymethylmethacrylate (PMMA) copolymer with the corresponding azobenzene moiety. We investigated the photoisomerization behavior by means of optical muitichannel analyzer with Xe lamp as well as real-time UV-Vis spectroscopy with high-pressure mercury lamp. Among three PNB copolymers, a polymer with azobenzene (R=H) was the most adaptable for observation of photoisomerization behavior. It was found that the rate of photoisomerization and relaxation depended on the structure of azobenzene chromophore, rather than that of polymer backbone.
机译:我们成功地合成了具有光致变色性能和出色的热稳定性的加成型聚降冰片烯(PNB)。通过酯交换法合成了三种具有不同偶氮苯部分(R = NO2,H,OCH3)的降冰片烯基单体。通过过渡金属催化加成聚合法合成相应的PNB共聚物,并通过GPC,UV-Vis光谱,NMR和热分析进行表征。为了比较取决于聚合物主链刚性的光致变色性能,我们制备了具有相应偶氮苯部分的聚甲基丙烯酸甲酯(PMMA)共聚物。我们通过使用Xe灯的光学多通道分析仪以及使用高压汞灯的实时UV-Vis光谱技术研究了光异构化行为。在三种PNB共聚物中,具有偶氮苯(R = H)的聚合物最适合用于观察光异构化行为。发现光异构化和弛豫的速率取决于偶氮苯发色团的结构,而不是聚合物骨架的结构。

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