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来自单个CdSe/聚对苯撑乙烯复合纳米结构的荧光寿命及相关光子统计

Fluorescence lifetimes and correlated photon statistics from single CdSe/oligo(phenylene vinylene) composite nanostructures.

作者信息

Odoi M Y, Hammer N I, Early K T, McCarthy K D, Tangirala R, Emrick T, Barnes M D

机构信息

George R. Richason, Jr. Chemistry Research Laboratory, Department of Chemistry , University of Massachusetts, Amherst, Massachusetts 01003, USA.

出版信息

Nano Lett. 2007 Sep;7(9):2769-73. doi: 10.1021/nl0713068. Epub 2007 Jul 27.

Abstract

We present measurements of fluorescence intensity trajectories and associated excited-state decay times from individual CdSe/oligo(phenylene vinylene) (CdSe-OPV) quantum dot nanostructures using time-tagged, time-resolved (TTTR) photon counting techniques. We find that fluorescence decay times for the quantum dot emitter in these composite systems are at least an order of magnitude shorter than ZnS-capped CdSe quantum dot systems. We show that both the blinking suppression and associated lifetime/count rate behavior can be described by a modified version of the diffusive reaction coordinate model which couples slow fluctuations in quantum dot electron (1Se, 1Pe) energies to Auger-assisted hole trapping processes, hence modifying both blinking statistics and excited-state decay rates.

摘要

我们使用时间标记、时间分辨(TTTR)光子计数技术,展示了来自单个CdSe/聚对苯撑乙烯(CdSe-OPV)量子点纳米结构的荧光强度轨迹测量结果以及相关的激发态衰减时间。我们发现,这些复合系统中量子点发射体的荧光衰减时间比硫化锌包覆的CdSe量子点系统至少短一个数量级。我们表明,闪烁抑制以及相关的寿命/计数率行为都可以用扩散反应坐标模型的一个修改版本来描述,该模型将量子点电子(1Se、1Pe)能量的缓慢波动与俄歇辅助空穴俘获过程耦合起来,从而改变闪烁统计和激发态衰减率。

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