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Two-Dimensional Fluorescence Correlation Spectroscopy with Modulated Excitation

机译:带调制激发的二维荧光相关光谱

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Overlap of multiple states or multiple species in a chemical system often creates a congested fluorescence spectrum that is difficult to interpret. The resolution of component spectra is essential for the understanding of the structure and dynamics of such multicomponent systems. In this paper, two-dimensional fluorescence correlation spectroscopy (2D FCS) is presented for the dissection of component spectra using the time correlation function. In 2D FCS, the time response of fluorescence intensity is collected at various wavelengths upon an external perturbation. The time correlation function is evaluated between wavelengths. A two-dimensional fluorescence correlation spectrum, or a plot of the correlation intensity as a function of two wavelength axes, resolves the overall spectrum into component spectra. The characteristics of the two-dimensional time correlation function are demonstrated in the frequency domain fluorescence spectroscopy in which the sinusoidally modulated excitation provides the external perturbation. Using 2D FCS, fine vibronic structures of the component fluorescence emission spectra were completely resolved from a strongly overlapped one-dimensional mixture spectrum. The existence of multiple microenvironments of a probe molecule in a biological system is evidenced by nonzero asynchronous correlation intensities. The corresponding spectra are retrieved from correlation analysis. Unlike traditional resolution methods in fluorescence spectroscopy based on statistical fitting of fluorescence decays, 2D FCS can resolve species whose fluorescence decays are linked by the rate constants in chemical reactions and species displaying multiexponential decay kinetics.
机译:化学系统中多种状态或多种物质的重叠通常会产生难以解释的拥挤荧光光谱。组分光谱的分辨率对于理解此类多组分系统的结构和动力学至关重要。在本文中,提出了二维荧光相关光谱法(2D FCS),用于使用时间相关函数对组分光谱进行解剖。在2D FCS中,在受到外部干扰后,会在各种波长下收集荧光强度的时间响应。在波长之间评估时间相关函数。二维荧光相关光谱或相关强度作为两个波长轴的函数的图将整个光谱分解为组分光谱。二维时间相关函数的特征在频域荧光光谱中得到了证明,其中正弦调制激发提供了外部扰动。使用2D FCS,可以从强烈重叠的一维混合物光谱中完全分辨出组件荧光发射光谱的精细振动结构。非零异步相关强度证明了生物系统中探针分子的多个微环境的存在。从相关分析中检索相应的光谱。与基于荧光衰变的统计拟合的荧光光谱中的传统解析方法不同,二维FCS可以解析其荧光衰变与化学反应中的速率常数相关联的物种,以及显示多指数衰变动力学的物种。

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