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Fused-Ring Derivatives of Quinoxalines: Spectroscopic Characterization and Photoinduced Processes Investigated by EPR Spin Trapping Technique

机译:喹喔啉的熔融环衍生物:EPR自旋阱技术研究的光谱表征和光诱导过程

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摘要

10-Ethyl-7-oxo-7,10-dihydropyrido[2,3-f]quinoxaline derivatives, synthesized as promising biologically/photobiologically active compounds were characterized by UV/vis, FT-IR and fluorescent spectroscopy. Photoinduced processes of these derivatives were studied by EPR spectroscopy, monitoring in situ the generation of reactive intermediates upon UVA (λmax = 365 nm) irradiation. The formation of reactive oxygen species and further oxygen- and carbon-centered radical intermediates was detected and possible reaction routes were suggested. To quantify the investigated processes, the quantum yields of the superoxide radical anion spin-adduct and 4-oxo-2,2,6,6-tetramethylpiperidine N-oxyl generation were determined, reflecting the activation of molecular oxygen by the excited state of the quinoxaline derivative.
机译:通过UV / vis,FT-IR和荧光光谱对合成为有前途的生物/光生物活性化合物的10-乙基-7-氧代-7,10-二氢吡啶并[2,3-f]喹喔啉衍生物进行了表征。通过EPR光谱研究了这些衍生物的光诱导过程,并在UVA(λmax= 365 nm)照射下原位监测反应性中间体的产生。检测了活性氧物种的形成以及其他以氧和碳为中心的自由基中间体,并提出了可能的反应路线。为了量化所研究的过程,确定了超氧自由基阴离子自旋加合物和4-氧代-2,2,6,6-四甲基哌啶N-氧基生成的量子产率,这反映了分子氧的激活状态。喹喔啉衍生物。

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