Laboratory of Macromolecular Photochemistry and Engineering, University of Haute Alsace, 3b, rue Alfred Werner, 68093 Mulhouse (France).
Chemistry. 2013 Sep 16;19(38):12853-8. doi: 10.1002/chem.201300622. Epub 2013 Aug 5.
New dyads, based on squarylium dye and substituted-triazine, were synthesized that exhibit an intramolecular photodissociative electron-transfer reaction. The compounds were used as a red-light photoradical generator. The photochemical activity of the dyad was compared to the corresponding unlinked systems (S+T) by determining the rate constant of electron transfer. The efficiency of the radical generation from the dyad compared to the unlinked system was demonstrated by measuring the maximum rate of free radical polymerization of acrylates in film. An excellent relationship between the rate of electron transfer and the rate of polymerization was found, evidencing the interest of this new approach to efficiently produce radicals under red light.
新的双联体,基于 squarylium 染料和取代三嗪,被合成出来,它们表现出分子内光致离解电子转移反应。这些化合物被用作红光光引发自由基生成剂。通过测定电子转移的速率常数,将双联体的光化学活性与相应的非键合体系(S+T)进行了比较。通过测量丙烯酸酯在薄膜中的自由基聚合的最大速率,证明了从双联体产生自由基的效率与非键合体系相比。发现电子转移速率与聚合速率之间存在很好的关系,证明了这种新方法在红光下有效地产生自由基的兴趣。