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Poisson-Distributed Electron-Transfer Dynamics from Single Quantum Dots to C60 Molecules

机译:从单量子点到C60分子的泊松分布电子转移动力学

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Functional quantum dot (QD)-based nanostructures are often constructed through the self-assembly of QDs with binding partners (molecules or other nanoparticles), a process that leads to a statistical distribution of the number of binding partners. Using single QD fluorescence spectroscopy, we probe this distribution and its effect on the function (electron-transfer dynamics) in QD?C60 complexes. Ensemble-averaged transient absorption and fluorescence decay as well as single QD fluorescence decay measurements show that the QD exciton emission was quenched by electron transfer from the QD to C60 molecules and the electron-transfer rate increases with the C60-to-QD ratio. The electron-transfer rate of single QD?C60 complexes fluctuates with time and varies among different QDs. The standard deviation increases linearly with the average of electron-transfer rates of single QD?C60 complexes, and the distributions of both quantities obey Poisson statistics. The observed distributions of single QD?C60 complexes and ensemble-averaged fluorescence decay kinetics can be described by a model that assumes a Poisson distribution of the number of adsorbed C60 molecules per QD. Our findings suggest that, in self-assembled QD nanostructures, the statistical distribution of the number of adsorbed partners can dominate the distributions of the averages and standard deviation of their interfacial dynamical properties.
机译:基于功能量子点(QD)的纳米结构通常是通过QD与结合配偶体(分子或其他纳米粒子)的自组装而构建的,这一过程导致了结合配偶体数量的统计分布。使用单QD荧光光谱,我们探测了这种分布及其对QD?C60配合物的功能(电子转移动力学)的影响。集合平均瞬态吸收和荧光衰减以及单个QD荧光衰减测量结果表明,QD激子发射被电子从QD传递到C60分子而猝灭,并且电子传递速率随C60与QD的比率增加。单个QD?C60配合物的电子传递速率随时间波动,并且在不同的QD之间变化。标准偏差随单个QD?C60配合物的电子传输速率的平均值线性增加,并且两个量的分布服从泊松统计。可以通过一个模型描述观察到的单个QDΔC60络合物的分布和整体平均荧光衰减动力学,该模型假设每个QD吸附的C60分子数具有泊松分布。我们的发现表明,在自组装QD纳米结构中,吸附伙伴数的统计分布可支配其界面动力学性质的平均值和标准偏差的分布。

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