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Evaluation of the Distribution of Distances Between Energy Donors and Acceptors by Fluorescence Decay

机译:荧光衰变法估算能量供体与受体之间的距离分布

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摘要

When transfer of electronic excitation energy occurs between a donor-acceptor pair by the Förster mechanism, the decay of fluorescence of the donor follows first-order kinetics, with a rate constant that depends on the distance from donor to acceptor. In a system that contains donor-acceptor pairs of different separations, the fluorescence decay of the donors will not be exponential, but will depend on the distribution function of donor-acceptor distances, f(r). Various approaches are outlined for the extraction of information about f(r) from the decay curve of donor fluorescence. Specifically, if a plausible expression with adjustable parameters is assumed for f(r), numerical methods can be used to evaluate the parameters that yield the closest fit between the observed decay curve and that calculated from the assumed f(r). The technique of fluorescence decay may prove to be useful for determination of distribution functions of end-to-end distances of polymers to the edges of which suitable donor-acceptor chromophore pairs have been attached.
机译:当通过Förster机制在供体-受体对之间发生电子激发能的转移时,供体的荧光衰减遵循一阶动力学,速率常数取决于从供体到受体的距离。在包含不同间隔的供体-受体对的系统中,供体的荧光衰减将不是指数的,而是取决于供体-受体距离f(r)的分布函数。概述了从供体荧光衰减曲线中提取有关f(r)信息的各种方法。具体来说,如果假设f(r)带有可调整参数的合理表达式,则可以使用数值方法来评估在观察到的衰减曲线与从假定f(r)计算得出的拟合之间最接近的参数。荧光衰减技术可能被证明可用于确定聚合物与已连接合适的供体-受体生色团对的边缘的端对端距离的分布函数。

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