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首页> 外文期刊>ACS nano >Impact of Shell Growth on Recombination Dynamics and Exciton-Phonon Interaction in CdSe-CdS Core-Shell Nanoplatelets
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Impact of Shell Growth on Recombination Dynamics and Exciton-Phonon Interaction in CdSe-CdS Core-Shell Nanoplatelets

机译:壳生长对CDSE-CDS核心壳纳米孔中重组动力学和激子 - 声子相互作用的影响

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摘要

We investigate the impact of shell growth on the carrier dynamics and exciton-phonon coupling in CdSe-CdS core-shell nanoplatelets with varying shell thickness. We observe that the recombination dynamics can be prolonged by more than one order of magnitude, and analyze the results in a global rate model as well as with simulations including strain and excitonic effects. We reveal that type I band alignment in the hetero platelets is maintained at least up to three monolayers of CdS, resulting in approximately constant radiative rates. Hence, observed changes of decay dynamics are not the result of an increasingly different electron and hole exciton wave function delocalization as often assumed, but an increasingly better passivation of nonradiative surface defects by the shell. Based on a global analysis of time-resolved and time-integrated data, we recover and model the temperature dependent quantum yield of these nanostructures and show that CdS shell growth leads to a strong enhancement of the photoluminescence quantum yield. Our results explain, for example, the very high lasing gain observed in CdSe-CdS nanoplatelets due to the type I band alignment that also makes them interesting as solar energy concentrators. Further, we reveal that the exciton-LO-phonon coupling is strongly tunable by the CdS shell thickness, enabling emission line width and coherence length control.
机译:我们调查壳体生长对载体动力学和激子 - 声子耦合的影响,具有不同的外壳厚度。我们观察到重组动力学可以延长多个数量级,并分析全球速率模型的结果以及包括应变和激发效应的模拟。我们揭示了杂血小板中的I型带对准保持至少最多三个CD,导致近似恒定的辐射速率。因此,观察到衰减动力学的变化不是经常假设的越来越不同的电子和孔激发器波函数临床化的结果,而是越来越更好地更好地通过壳体钝化钝化。基于全局分析的时间分辨和时间综合数据,我们恢复和模拟这些纳米结构的温度依赖量子产率,并表明CDS壳生长导致光致发光量子产率的强大提高。我们的结果解释了,例如,由于I型频段对准,在Cdse-CDS纳米纳薄中观察到的非常高的激光增益,这也使它们成为太阳能集中器的感兴趣。此外,我们揭示了Exciton-Lo-Phonon耦合通过CDS壳厚度强烈地调谐,使得发射线宽和相干长度控制。

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