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从单量子点转移

Hole transfer from single quantum dots.

机构信息

Department of Chemistry, Emory University, Atlanta, Georgia 30322, USA.

出版信息

ACS Nano. 2011 Nov 22;5(11):8750-9. doi: 10.1021/nn202713x. Epub 2011 Oct 11.

Abstract

Photoinduced hole transfer dynamics from single CdSe/CdS(3ML)/CdZnS(2ML)/ZnS(2ML) core/multishell quantum dots (QDs) to phenothiazine (PTZ) molecules were studied by single QD fluorescence spectroscopy to investigate the static and dynamic heterogeneities of the hole transfer process as well as its effect on the blinking dynamics of QDs. Ensemble-averaged transient absorption and fluorescence decay measurements show that excitons in QDs dissociate by transferring the valence band hole to PTZ with a time constant of 50 ns for the 1:1 PTZ-QD complex, and the subsequent charge recombination process (i.e., electron transfer from the conduction band of the reduced QD to oxidized PTZ to regenerate the complex in the ground state) occurs mainly on the 100 to 1000 ns time scale. Single QD-PTZ complexes show pronounced correlated fluctuations of fluorescence intensity and lifetime with time. In addition to the dynamic fluctuation, there are considerable heterogeneities of average hole transfer rate among different QD-PTZ complexes. The hole transfer process has little effect on the statistics of the off-states, which is often believed to be positively charged QDs with a valence band hole. Instead, it increases the probability of weakly emissive or "gray" states.

摘要

通过单量子点荧光光谱研究了从单个 CdSe/CdS(3ML)/CdZnS(2ML)/ZnS(2ML) 核/多壳量子点 (QD) 到吩噻嗪 (PTZ) 分子的光致空穴转移动力学,以研究空穴转移过程的静态和动态不均匀性及其对 QD 闪烁动力学的影响。平均瞬态吸收和荧光衰减测量表明,QD 中的激子通过将价带空穴转移到 PTZ 中而离解,对于 1:1 PTZ-QD 配合物,其时间常数为 50 ns,随后的电荷复合过程(即,从还原 QD 的导带到氧化 PTZ 的电子转移,以在基态下再生配合物)主要发生在 100 到 1000 ns 的时间范围内。单 QD-PTZ 配合物显示出荧光强度和寿命与时间的显著相关波动。除了动态波动外,不同 QD-PTZ 配合物之间的平均空穴转移率也存在相当大的不均匀性。空穴转移过程对离域状态的统计几乎没有影响,这通常被认为是带正电荷的 QD 具有价带空穴。相反,它增加了弱发射或“灰色”状态的概率。

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