首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Primary photochemistry of nitrated aromatic compounds: Excited-state dynamics and NO? dissociation from 9-nitroanthracene
【24h】

Primary photochemistry of nitrated aromatic compounds: Excited-state dynamics and NO? dissociation from 9-nitroanthracene

机译:硝化芳族化合物的主要光化学:激发态动力学和NO?从9-硝基蒽解离

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

We report results of femtosecond-resolved experiments which elucidate the time scale for the primary photoinduced events in the model nitroaromatic compound 9-nitroanthracene. Through time-resolved fluorescence measurements, we observed the ultrafast decay of the initially excited singlet state, and through transient absorption experiments, we observed the spectral evolution associated with the formation of the relaxed phosphorescent T1 state. Additionally, we have detected for the first time the accumulation of the anthryloxy radical which results from the nitro-group rearrangement and NO ? dissociation from photoexcited 9-nitroanthracene, a photochemical channel which occurs in parallel with the formation of the phosphorescent state. The spectral evolution in this molecule is highly complex since both channels take place in similar time ranges of up to a few picoseconds. Despite this complexity, our experiments provide the general time scales in which the primary products are formed. In addition, we include calculations at the time-dependent density functional level of theory which distinguish the molecular orbitals responsible for the n - π * character of the "receiver" vibronic triplet states that couple with the first singlet state and promote the ultrafast transfer of population between the two manifolds. Comparisons with the isoelectronic compounds anthracene-9-carboxylic acid and its conjugated base, which are highly fluorescent, show that in these two compounds the near-isoenergeticity of the S1 with an appropriate "receiver" triplet state is disrupted, providing support to the idea that a specific energy coincidence is important for the ultrafast population of the triplet manifold, prevalent in polycyclic nitrated aromatic compounds.
机译:我们报告了飞秒分辨实验的结果,这些结果阐明了模型硝基芳香化合物9-硝基蒽中主要光诱导事件的时间尺度。通过时间分辨的荧光测量,我们观察到了最初激发的单重态的超快衰减,并且通过瞬态吸收实验,我们观察到了与弛豫磷光T1状态形成相关的光谱演化。另外,我们首次检测到由于硝基重排和NO 3引起的邻氧基氧基的积累。从光激发的9-硝基蒽解离,这是与磷光状态形成平行发生的光化学通道。该分子的光谱演化非常复杂,因为两个通道的发生时间相似,可达几皮秒。尽管存在这种复杂性,我们的实验还是提供了形成初级产品的一般时间尺度。此外,我们在理论上随时间变化的密度泛函水平进行了计算,这些计算可区分负责“接收器”三重态的“ n-π*”特征的分子轨道,这些分子轨道与第一个单重态耦合并促进超快转移。两个流形之间的人口。与具有高荧光性的等电子化合物蒽-9-羧酸及其共轭碱的比较表明,在这两种化合物中,具有合适的“受体”三重态的S1的近等能性被破坏,这为该思想提供了支持。特定的能量巧合对于三重态歧管的超快填充非常重要,这在多环硝化芳族化合物中普遍存在。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号