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首页> 外文期刊>Journal of Chemical Sciences >Fluorescence resonance energy transfer (FRET) in chemistry and biology: Non-F??rster distance dependence of the FRET rate
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Fluorescence resonance energy transfer (FRET) in chemistry and biology: Non-F??rster distance dependence of the FRET rate

机译:化学和生物学中的荧光共振能量转移(FRET):FRET速率的非F递减距离依赖性

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摘要

Fluorescence resonance energy transfer (FRET) is a popular tool to study equilibrium and dynamical properties of polymers and biopolymers in condensed phases and is now widely used in conjunction with single molecule spectroscopy. In the data analysis, one usually employs the F??rster expression which predicts (1/e?‘…6) distance dependence of the energy transfer rate. However, critical analysis shows that this expression can be of rather limited validity in many cases. We demonstrate this by explicitly considering a donor-acceptor system, polyfluorene (PF6)-tetraphenylporphyrin (TPP), where the size of both donor and acceptor is comparable to the distance separating them. In such cases, one may expect much weaker distance (as 1/e?‘…2 or even weaker) dependence. We have also considered the case of energy transfer from a dye to a nanoparticle. Here we find 1/e?‘…4 distance dependence at large separations, completely different from F??rster. We also discuss recent application of FRET to study polymer conformational dynamics.
机译:荧光共振能量转移(FRET)是研究凝聚相中聚合物和生物聚合物的平衡和动力学性质的流行工具,现已广泛用于单分子光谱分析。在数据分析中,通常采用F?rster表达式来预测能量传输速率的(1 / e?’... 6)距离依赖性。但是,严格的分析表明,在许多情况下,此表达式的有效性可能非常有限。我们通过明确考虑供体-受体系统聚芴(PF6)-四苯基卟啉(TPP)来证明这一点,其中供体和受体的大小都可与分隔它们的距离相媲美。在这种情况下,人们可能期望距离之间的依赖性要弱得多(如1 / e?’…2或更弱)。我们还考虑了从染料到纳米粒子的能量转移情况。在这里,我们发现大间距下的1 / e?’…4距离相关性与F?rster完全不同。我们还将讨论FRET在研究聚合物构象动力学方面的最新应用。

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