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Quantum Yield Heterogeneity among Single Nonblinking Quantum Dots Revealed by Atomic Structure-Quantum Optics Correlation

机译:原子结构-量子光学相关性揭示的单个非闪烁量子点之间的量子产率异质性

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摘要

Physical variations in colloidal nanostructures give rise to heterogeneity in expressed optical behavior. This correlation between nanoscale structure and function demands interrogation of both atomic structure and photophysics at the level of single nanostructures to be fully understood. Herein, by conducting detailed analyses of fine atomic structure, chemical composition, and time-resolved single-photon photoluminescence data for the same individual nanocrystals, we reveal inhomogeneity in the quantum yields of single nonblinking "giant" CdSe/CdS core/shell quantum dots (g-QDs). We find that each g-QD possesses distinctive single exciton and biexciton quantum yields that result mainly from variations in the degree of charging, rather than from volume or structure inhomogeneity. We further establish that there is a very limited nonemissive "dark" fraction (<2%) among the studied g-QDs and present direct evidence that the g-QD core must lack inorganic passivation for the g-QD to be "dark". Therefore, in contrast to conventional QDs, ensemble photoluminescence quantum yield is principally defined by charging processes rather than the existence of dark g-QDs.
机译:胶体纳米结构的物理变化会导致所表达的光学行为不均一。纳米级结构和功能之间的这种相关性要求在单个纳米结构的水平上对原子结构和光物理进行质询。在这里,通过对相同的单个纳米晶体进行精细的原子结构,化学成分和时间分辨的单光子光致发光数据的详细分析,我们揭示了单个不闪烁的“巨型” CdSe / CdS核/壳量子点的量子产率中的不均匀性(g-QDs)。我们发现,每个g-QD都具有独特的单激子和双激子量子产率,这主要是由于带电程度的变化而不是体积或结构的不均匀性引起的。我们进一步确定,在所研究的g-QD中只有非常有限的非发射性“暗”分数(<2%),并提供了直接证据表明g-QD核心必须缺少无机钝化才能使g-QD为“暗”。因此,与传统的量子点相反,整体的光致发光量子产率主要是由充电过程而不是暗的g-QD来定义的。

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