Geng L, Cox J M, He Y
Department of Chemistry, University of Iowa, Iowa City 52242, USA.
Analyst. 2001 Aug;126(8):1229-39. doi: 10.1039/b102976m.
Dynamic two-dimensional fluorescence correlation spectroscopy (2D FCS) is presented in the general form. Dynamic 2D FCS evaluates the time correlation function between two wavelength axes when an external perturbation is applied to the sample. It displays the vibronic features with similar time response functions in the synchronous correlation spectrum and the features with different time responses in the asynchronous correlation spectrum. The correlation analysis allows detailed assignments of the vibronic spectra of multicomponent samples. The emission-emission 2D FCS has proven to be able to resolve spectra with substantial overlaps, of species in equilibrium with each other, and of reacting species whose kinetic constants are linked and multiexponential. Similarly, the correlation analysis between excitation wavelengths allows the assignment of the excitation bands to fluorescent components. When a sinusoidal light source is used to excite the sample, the excitation-emission correlation requires the collection of only four spectra, two in-phase and two quadrature. The two-dimensional excitation-emission correlation analysis uncovers the association between the excitation and the emission vibronic features, enabling the complete assignment of the component spectra. The band associations and spectral assignments are facilitated by the two-dimensional phase map that is constructed from the synchronous and asynchronous correlation spectra. Spectral resolution can be optimized by varying the frequency of excitation and is not influenced by the detector phase angle used to collect the spectra. The resolution power of the 2D FCS is demonstrated with the retrieval of the anthracene emission spectrum from a pyrene-anthracene mixture when it contributes only 4% to the total fluorescence intensity.
本文以一般形式介绍了动态二维荧光相关光谱法(2D FCS)。动态二维荧光相关光谱法在对样品施加外部扰动时,评估两个波长轴之间的时间相关函数。它在同步相关光谱中显示具有相似时间响应函数的振动电子特征,在异步相关光谱中显示具有不同时间响应的特征。相关分析允许对多组分样品的振动电子光谱进行详细归属。发射-发射二维荧光相关光谱法已被证明能够分辨具有大量重叠的光谱、相互处于平衡状态的物种的光谱以及动力学常数相关且为多指数的反应物种的光谱。同样,激发波长之间的相关分析允许将激发带归属到荧光组分。当使用正弦光源激发样品时,激发-发射相关仅需要采集四个光谱,两个同相光谱和两个正交光谱。二维激发-发射相关分析揭示了激发和发射振动电子特征之间的关联,从而能够完全归属组分光谱。由同步和异步相关光谱构建的二维相位图有助于谱带关联和光谱归属。通过改变激发频率可以优化光谱分辨率,并且它不受用于采集光谱的探测器相位角的影响。当蒽在芘-蒽混合物的总荧光强度中仅占4%时,二维荧光相关光谱法的分辨能力通过从该混合物中检索蒽的发射光谱得到了证明。