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Research on Some Novel Functional Azobenzene Derivatives With Alkyl Chains and Different Substituted Groups

机译:几种具有烷基链和不同取代基的功能性偶氮苯衍生物的研究

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Two functional azobenzene derivatives with alkyl chains and different substituted groups have been synthesized and their photoisomerization have also been investigated. It has been found that depending on the alkyl chain and different substituted groups, the formed azobenzene derivatives showed different properties, indicating distinct regulation of molecular skeletons. UV and IR data confirmed commonly the characteristic absorption of alkyl chain and aromatic segments in molecular structures. Thermal analysis demonstrated that the structural influence of both compounds in different temperature ranges. The difference of thermal stability is mainly attributed to the formation of Schiff base group and different substituent groups in molecular structure. The photoisomerization of these compounds both in solution and in cast film can undergo trans-to-cis isomerization by UV light irradiation, depending on different substituted groups. The present results have demonstrated that the special properties of azobenzene derivatives can be effectively turned by modifying molecular structures of objective compounds with proper substituted groups, which show potential application in functional material field.
机译:已经合成了具有烷基链和不同取代基的两种功能性偶氮苯衍生物,并研究了它们的光致作用。已经发现,取决于烷基链和不同取代基,形成的偶氮苯衍生物显示出不同的性质,表明分子骨骼的明显调节。 UV和IR数据通常证实了分子结构中烷基链和芳族区段的特征吸收。热分析表明,两种化合物在不同温度范围内的结构影响。热稳定性的差异主要归因于分子结构中席夫碱基和不同取代基的形成。根据不同的取代基,溶液和浇铸膜中的这些化合物的光硅白化在溶液和浇铸膜中可以通过UV光照射进行反向CIS异构化。本结果表明,通过用适当的取代基团修饰目标化合物的分子结构,可以有效地转动偶氮苯衍生物的特殊性质,其显示在功能材料场中的潜在应用。

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