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Study on synthesis and photoactivity of N-substituted diazabicyclononane derivatives with different substituents

机译:具有不同取代基的N-取代的二氮杂双环壬烷衍生物的合成及光活性研究

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N-substituted diazabicyclononanes with different benzylic substituents were synthesized by hydrogenating diazabicyclononene with LiAlH4 and alkylating secondary amine with halobenzyl derivatives. The synthesized diazabicyclononanes were identified with NMR spectrometry; the UV absorption and fluorescence emission of the diazabicyclononanes were examined with spectroscopes; the reactivity of the diazabicyclononane as radical photoinitiator and photolatent base were evaluated with DSC, FTIR spectroscope and gel fraction determination; the effects of substituents on the photoactivities of the diazabicyclononanes were investigated. Electron conjugation in the substituents played a prominent role on the photoactivity. As the conjugation extended, the extinction coefficient increased and fluorescence decreased; meanwhile, the UV absorption expanded towards low frequency. For diazabicyclononane N-substituted with 4-methylene benzophenone, the maximum absorption appeared around 256 nm with extinction coefficient 1.78 x 10(4-) mol(-1) L cm(-1). It could work as radical photoinitiator and photolatent base simultaneously. With this diazabicyclononane, epoxy acrylate could be UV cured within seconds and the activation temperature of epoxy/anhydride could be reduced 50 degrees C after UV excitation. The gel fraction of acrylate/epoxy hybrid resins could be about 90% after UV-thermal dual curing. (C) 2014 Published by Elsevier Ltd.
机译:通过用LiAlH4加氢二氮杂双环壬烯并用卤代苄基衍生物烷基化仲胺来合成具有不同苄基取代基的N-取代的二氮杂双环壬烷。合成的二氮杂双环壬烷用NMR光谱法鉴定。用分光镜检查了二氮杂双环壬烷的紫外线吸收和荧光发射。用DSC,FTIR光谱仪和凝胶分数测定法评估了二氮杂双环壬烷作为自由基光引发剂和光潜碱的反应性。研究了取代基对二氮杂双环壬烷光活性的影响。取代基中的电子共轭对光活性起着重要作用。随着共轭作用的扩展,消光系数增加,荧光减弱。同时,紫外线吸收向低频扩展。对于N-取代的4-氮杂二苯甲酮二氮杂双环壬烷,最大吸收出现在256 nm附近,消光系数为1.78 x 10(4-)mol(-1)L cm(-1)。它可以同时作为自由基光引发剂和光潜碱。使用这种二氮杂双环壬烷,可以在几秒钟内对丙烯酸丙烯酸酯进行紫外线固化,并且可以在紫外线激发后将环氧/酸酐的活化温度降低50摄氏度。紫外线-热双固化后,丙烯酸酯/环氧杂化树脂的凝胶分数约为90%。 (C)2014由Elsevier Ltd.出版

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