De Bonfils Paul, Sandoval-Altamirano Catalina, Moreau Xavier, Nun Pierrick, Laurent Adèle D, Gunther German, Coeffard Vincent
CNRS, CEISAM, UMR 6230, Nantes Université, Nantes, France.
Facultad de Química y Biología, Universidad de Santiago de Chile, Santiago, Chile.
Photochem Photobiol. 2023 Mar;99(2):642-651. doi: 10.1111/php.13681. Epub 2022 Aug 17.
A series of pyrroloquinolone photosensitizers bearing different halogen substituents (Cl, Br, I) on the heterocyclic framework was studied. These structures were readily prepared through a multi-step synthetic sequence involving an oxidative protocol as an important step to access the quinolone framework. Spectroscopic characterizations and computational investigations were carried out to study the dyes before and after the oxidative step. Interestingly, the fluorescence emission was significantly reduced upon oxidation. In spite of a low photostability under UV light, the pyrroloquinolone photosensitizers proved effective to produce singlet oxygen. Higher singlet oxygen quantum yields were obtained with photosensitizers bearing halogen atoms with a higher atomic number.
研究了一系列在杂环骨架上带有不同卤素取代基(Cl、Br、I)的吡咯并喹诺酮类光敏剂。这些结构通过多步合成序列轻松制备,其中氧化步骤是获得喹诺酮骨架的重要步骤。进行了光谱表征和计算研究,以研究氧化步骤前后的染料。有趣的是,氧化后荧光发射显著降低。尽管在紫外光下光稳定性较低,但吡咯并喹诺酮类光敏剂被证明能有效产生单线态氧。原子序数较高的卤素原子取代的光敏剂获得了更高的单线态氧量子产率。