首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Photophysical Dynamics of Single Molecules Studied by Spectrally-Resolved Fluorescence Lifetime Imaging Microscopy (SFLIM)
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Photophysical Dynamics of Single Molecules Studied by Spectrally-Resolved Fluorescence Lifetime Imaging Microscopy (SFLIM)

机译:光谱分辨荧光寿命成像显微镜(SFLIM)研究单分子的光物理动力学。

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摘要

A new scanning technique for simultaneous recording of intensity, fluorescence lifetime, and spectral information with single molecule sensitivity is presented. We investigated and compared the photophysical parameters of single oxazine (JA242), rhodamine (JF9), and carbocyanine (Cy5) derivatives adsorbed on glass surfaces under air-equilibrated conditions. The obtained results demonstrate that spectrally resolved fluorescence lifetime imaging microscopy (SFLIM) is ideally suited to reveal subpopulations in inhomogeneous samples and mixtures. To obtain a more detailed insight into the underlying fluorescence dynamics of single molecules, the fluorescence characteristics of the three different chromophores were studied positioning isolated molecules in the laser focus. Two detectors with two PC plug-in cards for time-correlated single-photon counting (TCSPC) were utilized to monitor fluorescence intensity, lifetime, and spectral information simultaneously with single-molecule sensitivity and microseconds to milliseconds time resolution. Discrete jumps in fluorescence intensity from single molecules which lacked spectral diffusion and changes in radiative lifetime have been observed with correlation times (triplet lifetimes) spanning several orders of magnitude (from 2 #mu#s for the rhodamine derivative up to several seconds for the oxazine dye) and amplitude. For the carbocyanine derivative Cy5, fast spectral fluctuations to red-shifted dim-states which appear partly as off-states with a lifetime in the millisecond range were determined. In addition, these dim-states exhibit the same radiative decay rate of approx2 ns as the normal on-state. Our results imply that a direct correlation between the radiative decay time and spectral fluctuations is not necessarily given in each of the three chromophores. Both parameters seem to be independent characteristic of each individual molecule. About 5-15% of all molecules independent of the dye structure, respectively, exhibited a constant emission spectrum but strong fluctuations in fluorescence lifetime directly correlated to the intensity. The results indicate that a combined analysis of emission spectrum, intensity and radiative decay rate is a valuable approach for classification and quantification of the underlying photophysical dynamics.
机译:提出了一种新的扫描技术,用于同时记录强度,荧光寿命和具有单分子敏感性的光谱信息。我们研究并比较了空气平衡条件下吸附在玻璃表面上的单恶嗪(JA242),若丹明(JF9)和碳菁(Cy5)衍生物的光物理参数。获得的结果表明,光谱分辨荧光寿命成像显微镜(SFLIM)非常适合揭示不均匀样品和混合物中的亚群。为了更深入地了解单个分子的潜在荧光动力学,研究了三种不同发色团的荧光特征,将分离的分子定位在激光焦点上。两个带有两个PC插入式卡的检测器用于时间相关的单光子计数(TCSPC),用于同时监测荧光强度,寿命和光谱信息,同时具有单分子灵敏度和微秒至毫秒的时间分辨率。已经观察到缺乏光谱扩散和辐射寿命变化的单个分子的荧光强度离散跳变,相关时间(三重态寿命)跨越数个数量级(从若丹明衍生物的2#mu#s到恶嗪的几秒钟)染料)和振幅。对于碳花青衍生物Cy5,确定了快速光谱波动到红移暗态,该暗态部分显示为关闭态,寿命在毫秒范围内。另外,这些暗态表现出与正常导通态相同的大约2 ns的辐射衰减率。我们的结果表明,在三种生色团的每一个中,都不必给出辐射衰减时间与光谱波动之间的直接关系。这两个参数似乎是每个单独分子的独立特征。独立于染料结构的所有分子中,分别约有5-15%表现出恒定的发射光谱,但荧光寿命的强烈波动与强度直接相关。结果表明,对发射光谱,强度和辐射衰减率的综合分析是对潜在的光物理动力学进行分类和量化的有价值的方法。

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