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Synthesis and Spectral Study of a New Family of 25-Diaryltriazoles Having Restricted Rotation of the 5-Aryl Substituent

机译:5芳基取代基旋转受限的25-二芳基三唑新家族的合成与光谱研究

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摘要

Efficient synthesis of 2,5-diaryl substituted 4-azido-1,2,3-triazoles by the reaction of sodium azide with dichlorosubstituted diazadienes was demonstrated. The optical properties of the prepared azidotriazoles were studied to reveal a luminescence maximum in the 360–420 nm region. To improve the luminescence quantum yields a family of 4-azido-1,2,3-triazoles bearing -propargyloxy substituents in the 5 position was prepared. Subsequent intramolecular thermal cyclization permits to construct additional triazole fragment and obtain unique benzoxazocine derivatives condensed with two triazole rings. This new family of condensed heterocycles has a flattened heterocyclic system structure to provide more conjugation of the 5-aryl fragment with the triazole core. As a result, a new type of UV/“blue light-emitting” materials with better photophysical properties was obtained.
机译:通过叠氮化钠与二氯取代的二氮杂二烯的反应,有效合成了2,5-二芳基取代的4-叠氮基-1,2,3-三唑。对制备的叠氮三唑的光学性质进行了研究,以揭示360-420 nm区域的最大发光量。为了提高发光量子产率,制备了在5位带有-炔丙基氧基取代基的4-叠氮基-1,2,3-三唑家族。随后的分子内热环化允许构建额外的三唑片段并获得与两个三唑环缩合的独特的苯并恶唑啉衍生物。这个新的稠合杂环族具有扁平的杂环系统结构,可提供更多的5-芳基片段与三唑核的共轭键。结果,获得了具有更好的光物理性质的新型UV /“发蓝光”材料。

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