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首页> 外文期刊>Journal of Fluorescence >Fluorescence Spectroscopic Properties Analysed within the Extended F?rster Theory with Application to Biomacromolecular Systems
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Fluorescence Spectroscopic Properties Analysed within the Extended F?rster Theory with Application to Biomacromolecular Systems

机译:在扩展的费斯特理论内分析的荧光光谱性质及其在生物大分子系统中的应用

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摘要

The extended Förster theory (EFT) of electronic energy transport accounts for translational and rotational dynamics, which are neglected by the classical Förster theory (FT). EFT has been developed for electronic energy transfer within donor-acceptor pairs [Isaksson, et al, Phys. Chem. Chem. Phys., 9, 1941(2007)] and donor-donor pairs [Johansson, et al, J. Chem. Phys., 105, 10896 (1996); Norlin, et al, Phys. Chem. Chem. Phys., 10, 6962(2008)]. For donors that exhibit different or identical non-exponential fluorescence relaxation within a donor-donor pair, the process of reverberating energy migration is reversible to a higher or lower degree. Here the impact of the EFT has been studied with respect to its influence on fluorescence quantum yields, fluorescence lifetimes as well as depolarisation experiments. The FT predicts relative fluorescence quantum yields which usually agree with the EFT within experimental accuracy, however, substantial deviations occurs in the steady-state and in particular the time-resolved depolarisation data.
机译:电子能量传输的扩展Förster理论(EFT)解释了平动和旋转动力学,而经典Förster理论(FT)则忽略了这一点。已经开发出EFT用于供体-受体对内的电子能量转移[Isaksson等,Phys。化学化学Phys。,9,1941(2007)]和供体-供体对[Johansson等人,J.Chem.Chem.Soc。,(1989)5:1879]。 Phys.105,10896(1996); Norlin等,《物理学报》。化学化学Phys。,10,6962(2008)]。对于在供体-供体对中表现出不同或相同的非指数荧光弛豫的供体,回响能量迁移的过程可以较高或较低的程度可逆。在此,已经研究了EFT对荧光量子产率,荧光寿命以及去极化实验的影响。 FT预测在实验精度内通常与EFT一致的相对荧光量子产率,但是,稳态尤其是时间分辨的去极化数据会发生较大的偏差。

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