首页> 外文期刊>Monatshefte für Chemie / Chemical Monthly >Photochromism of dihydroindolizines. Part XV: Synthesis and photophysical properties of dihydroindolizine photoswitches bearing a conjugated aryleneethynylene tripodal linker system
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Photochromism of dihydroindolizines. Part XV: Synthesis and photophysical properties of dihydroindolizine photoswitches bearing a conjugated aryleneethynylene tripodal linker system

机译:二氢吲哚并嗪的光致变色。第XV部分:带有共轭亚芳基乙炔撑三脚架连接系统的二氢吲哚嗪光开关的合成和光物理性质

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Abstract Different photochromic dihydroindolizines (DHIs) bearing conjugated aryleneethynylene tripodal linker systems were synthesized using several Sonogashira coupling reactions. The spirocyclopropene precursors incorporating different acetylenic bridge moieties at the 2-position of the fluorene moiety were synthesized via chemical and photochemical routes. Multiaddressable photochromic properties of the DHI derivatives substituted in the fluorene (region A) and pyridazine (region C) parts were studied. Optimization of the formation of the DHIs was also done by applying different palladium-mediated Sonogashira coupling reactions. Irradiation of the photochromic DHIs with polychromatic light led to colored betaines which undergo thermal 1,5-electrocyclization. The kinetics of the thermal 1,5-electrocyclization were studied by using a multichannel FT–UV–Vis spectrophotometer. A pronounced effect on the kinetic behavior of the 1,5-electrocyclization process of the betaines was observed by changing substitution from non-substituted to dimethyl-substituted pyridazines. Photodegradation experiments and the bleaching and fading cycles revealed high photostability of the betaines under investigation. These properties of betaines of tripodal linker conjugates will help these materials to find applications.
机译:摘要利用几种Sonogashira偶联反应,合成了不同的带有共轭亚芳基乙炔基三脚架连接体系的光致变色二氢吲哚并二酮。通过化学和光化学途径合成了在芴部分的2-位掺入不同炔键部分的螺环丙烯前体。研究了在芴(A区)和哒嗪(C区)部分取代的DHI衍生物的多址光致变色特性。通过应用不同的钯介导的Sonogashira偶联反应,也可以优化DHI的形成。用多色光照射光致变色DHI会导致有色甜菜碱经历热1,5-电环化。通过多通道FT-UV-Vis分光光度计研究了热1,5-电环化反应的动力学。通过将取代从未取代的取代为二甲基取代的哒嗪,可以观察到对甜菜碱的1,5-电环化过程动力学行为的显着影响。光降解实验以及漂白和褪色循环表明所研究的甜菜具有很高的光稳定性。三脚架接头共轭物甜菜碱的这些特性将有助于这些材料的应用。

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