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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Distance-Dependent Quenching of Anthracene Fluorescence by AT,AT-Diethylaniline Observed by Frequency-Domain Fluorometry
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Distance-Dependent Quenching of Anthracene Fluorescence by AT,AT-Diethylaniline Observed by Frequency-Domain Fluorometry

机译:频域荧光光谱法观察AT,AT-二乙基苯胺对蒽荧光的距离依赖性猝灭

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摘要

We measured the time-dependent fluorescence intensity decays of anthracene and 9,10-dimethylanthracene in propylene glycol quenched by N,N-diethylaniline by frequency-domain fluorometry. The frequency-domain data, for a range of temperatures and diffusion coefficients, are consistent with a rate of quenching which depends exponentially on the fluorophore-quencher separation distance. This type of quenching interaction explains upward curvature in the Stern-Volmer plots, in total, the steady-state andtime-resolved data are consistent with a mechanism of quenching due to the electron transfer process from DEA to the singlet excited anthracene molecules.
机译:我们通过频域荧光法测量了N,N-二乙基苯胺淬灭的丙二醇中蒽和9,10-二甲基蒽随时间的荧光强度衰减。对于一定范围的温度和扩散系数,频域数据与猝灭速率一致,猝灭速率与荧光团-猝灭剂的分离距离呈指数关系。这种猝灭相互作用解释了Stern-Volmer图中的向上弯曲,总体而言,由于电子从DEA转移到单态激发蒽分子的过程,稳态和时间分辨数据与猝灭机理一致。

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