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首页> 外文期刊>ACS nano >Quantum dot photoluminescence activation and decay: dark, bright, and reversible populations in ZnS-capped CdSe nanocrystals
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Quantum dot photoluminescence activation and decay: dark, bright, and reversible populations in ZnS-capped CdSe nanocrystals

机译:量子点光致发光的激活和衰减:ZnS覆盖的CdSe纳米晶体中的暗,亮和可逆种群

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摘要

Semiconductor nanocrystals or quantum dots (QDs) exhibit a number of unique optical properties including fluorescence intermittency (FI), photoluminescence (PL) enhancement, and darkening. Here we report PL activation (PLA) and darkening over populations of single colloidal ZnS-capped CdSe QDs under continuous illumination, which is described well by a simple consecutive elementary reaction (CER) scheme in the 1 to 10 kW cm~(-2) excitation intensity regime. The scheme allows determination of rate constants for both fluorescence activation and decay processes as well as the measurement of initial bright, fluorescent and dark, nonfluorescent QD fractions. The latter parameters can function as a "quality control" on the total population of detectable QDs in an imaging experiment or a synthesis. We further show reversible PLA at low intensities <0.5 kW cm~(-2) and a photoinduced conditioning of the QD that results in increased rates of PLA following repeated cycles of illumination and an induction period that precedes photoactivation upon initial exposure to light. By interrogating individual QD fluorescence trajectories, the population fractions found exclusive to each of three illumination cycles, common to any two cycles and fluorescent in all three cycles, show that only a small number of QDs (~5%) remain fluorescent through multiple cycles of photoactivation and recovery.
机译:半导体纳米晶体或量子点(QD)具有许多独特的光学特性,包括荧光间歇(FI),光致发光(PL)增强和变暗。在此我们报道了在连续照明下PL活化(PLA)和单个胶体ZnS封端的CdSe QD的种群变暗的情况,这通过一个简单的连续元素反应(CER)方案在1至10 kW cm〜(-2)中很好地描述了激发强度制度。该方案可以确定荧光激活和衰减过程的速率常数,以及测量初始的亮,荧光和暗,非荧光QD分数。后面的参数可以在成像实验或合成中充当可检测QD总数的“质量控制”。我们还显示了在低强度<0.5 kW cm〜(-2)时可逆的PLA和QD的光诱导调节,这导致在重复的照明循环之后以及在最初暴露于光后进行光活化之前的诱导期,PLA的速率增加。通过询问单个的QD荧光轨迹,发现三个照明周期中的每一个(对于任何两个周期是共有的,并且在所有三个周期中都是荧光的)独有的种群分数表明,只有少量QD(〜5%)在多个QD周期中保持荧光光活化和恢复。

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