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首页> 外文期刊>The Journal of Chemical Physics >Single particle versus ensemble average: From power-law intermittency of a single quantum dot to quasistretched exponential fluorescence decay of an ensemble
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Single particle versus ensemble average: From power-law intermittency of a single quantum dot to quasistretched exponential fluorescence decay of an ensemble

机译:单个粒子与集合平均:从单个量子点的幂律间歇性到集合的拟衰减的指数荧光衰减

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摘要

Light-induced diffusion-controlled electron transfer is proposed as an underlying mechanism for the intermittency (power law and breakdown) of a single quantum dot and ensemble-averaged fluorescence decay. The intensity decay can be approximated to a stretched exponential expression. The physical links to the free energy gap, reorganization energy, electronic coupling, and diffusion correlation times are discussed. A procedure is described for extracting these molecular-based parameters from experiments and is demonstrated with examples using existing data. (c) 2005 American Institute of Physics.
机译:光诱导的扩散控制的电子转移被认为是单个量子点的间歇性(幂定律和击穿)和整体平均荧光衰减的潜在机制。强度衰减可以近似为拉伸的指数表达式。讨论了与自由能隙,重组能,电子耦合和扩散相关时间的物理联系。描述了一种从实验中提取这些基于分子的参数的程序,并通过使用现有数据的示例进行了演示。 (c)2005年美国物理研究所。

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