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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Single-Molecule Fluorescence Spectroscopy of Perylene Diimide Dyes in a gamma-Cyclodextrin Film: Manifestation of Photoinduced H-Atom Transfer via Higher Triplet (n, pi*) Excited States
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Single-Molecule Fluorescence Spectroscopy of Perylene Diimide Dyes in a gamma-Cyclodextrin Film: Manifestation of Photoinduced H-Atom Transfer via Higher Triplet (n, pi*) Excited States

机译:γ-环糊精膜中Per丙二酰亚胺染料的单分子荧光光谱:通过高级(n,pi *)激发态的光致致抗H-原子转移的表现

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摘要

Supramolecular complexation of gamma-cyclodextrin (gamma-CD) with N,N'-bis(2,6-dimethylphenypperylene-3,4,9,10-tetracarboxylic (DMP-PDI) or N,N'-bis(2,6-dioctyl)perylene-3,4,9,10-tetracarboxylic diimide (C8-PDI) dye in an aqueous solution and in a gamma-CD solid film were investigated via ensemble and single-molecule fluorescence spectroscopy. These two perylene diimide derivatives possess almost the same electronic structure but have different terminal functional groups. This structural difference leads to formation of an inclusion complex of gamma-CD with DMP-PDI but not with C8-PDI in aqueous solution. In a gamma-CD solid film, the distributions of the wavelengths of emission maximum (lambda(em)(max)) are strikingly different between these two dyes; a much narrower and blue-shifted lambda(em)(max) distribution was observed for C8-PDI relative to DMP-PDI. This difference is attributed to the fact that the C8-PDI molecules are bound at the gamma-CD/glass interface as a result of spin-coating of the sample solution, whereas the DMP-PDI molecules form 1:1 and 1:2 inclusion complexes with conformational heterogeneities in the film. In comparison to the case for C8-PDI, more frequent on off blinking events were observed for DMP-PDI. The blinking statistics of DMP-PDI in the gamma-CD film exhibit both single-exponential and nonexponential (i.e., dispersive) kinetics, revealed by robust statistical analysis. Energetic consideration with the aid of theoretical calculations suggests that the underlying photophysics most probably involves hydrogen atom transfer (HAT) between the DMP-PDI guest and gamma-CD host via higher excited (n, pi*) triplet states. The hypothesis of HAT in the inclusion complex reasonably explains the experimental results; however, a charge transfer hypothesis cannot explain the results. The dispersive kinetics is attributable to the effect of thermal fluctuation in the forward and backward HAT reactions.
机译:γ-环糊精的超分子络合(γ-CD)与N,N'-双(2,6- dimethylphenypperylene -3,4,9,10-四(DMP-PDI)或N,N'-双(2,6- N'-二辛基)苝-3,4,9,10-四羧酸二酰亚胺(C8-PDI)在水溶液中染色,并在γ-CD的固体膜经由合奏和单分子荧光光谱进行了调查。这两个苝二酰亚胺衍生物具有几乎相同的电子结构,但是具有不同的末端官能团。这种结构差别导致形成伽玛-CD与DMP-PDI的包合络合物的,但不与C8-PDI在水溶液中,在伽马-CD固体膜,所述分布发射最大值的波长的(拉姆达(EM)(最大))是这些两种染料之间显着不同的;(EM)观察到相对于DMP-PDI C8-PDI窄得多的和蓝移拉姆达(最大)的分布。这个差异归因于该C8-PDI分子在伽马-CD /玻璃界面绑定为旋的结果的事实涂布的样品溶液,而DMP-PDI分子形成1:1和1:2个与在薄膜构象非均质包合络合物。相比于用于C8-PDI的情况下,开关闪烁事件更为频繁,观察DMP-PDI。 DMP-PDI在伽马-CD膜表现出闪烁的统计单指数和非指数(即,分散)动力学,揭示稳健统计分析。与理论计算的辅助高能考虑表明,潜在的光物理最可能涉及通过更高的激发(N,PI *)三重态的DMP-PDI旅客和γ-CD的主机之间的氢原子转移(HAT)。 HAT的包合物的假设合理解释了实验结果;然而,电荷转移假说无法解释的结果。色散动力学是由于热波动的在向前和向后HAT反应的效果。

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