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Effects of surface and interface traps on exciton and multi-exciton dynamics in core/shell quantum dots

机译:表面和界面陷阱对核/壳量子点中激子和多激子动力学的影响

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Exciton interactions and dynamics are the most important factors determining the exceptional photophysical properties of semiconductor quantum dots (QDs). In particular, best performances have been obtained for ingeniously engineered core/shell QDs. We have studied two factors entering in the exciton decay dynamics with adverse effects for the luminescence efficiency: exciton trapping at surface and interface traps, and non-radiative Auger recombination in QDs carrying either net charges or multiple excitons. In this work, we present a detailed study into the optical absorption, fluorescence dynamics and quantum yield, as well as ultrafast transient absorption properties of CdSe/CdS, CdSe/Cd_(0.5)Zn_(0.5)S, and CdSe/ZnS QDs as a function of shell thickness. It turns out that de-trapping processes play a pivotal role in determining steady state emission properties. By studying the excitation dependent photoluminescence quantum yields (PLQY) in different CdSe/Cd_xZn_(1-x)S (x = 0, 0.5, 1) QDs, we demonstrate the different role played by hot and cold carrier trapping rates in determining fluorescence quantum yields. Finally, the use of global analysis allows us untangling the complex ultrafast transient absorption signals. Smoothing of interface potential, together with effective surface passivation, appear to be crucial factors in slowing down both Auger-based and exciton trapping recombination processes.
机译:激子相互作用和动力学是决定半导体量子点(QD)优异光物理性质的最重要因素。特别是,经过精心设计的核/壳QD获得了最佳性能。我们研究了激子衰变动力学中两个对发光效率产生不利影响的因素:激子在表面和界面陷阱处的俘获,以及在带有净电荷或多个激子的量子点中的非辐射俄歇复合。在这项工作中,我们对CdSe / CdS,CdSe / Cd_(0.5)Zn_(0.5)S和CdSe / ZnS QDs的光吸收,荧光动力学和量子产率以及超快速瞬态吸收特性进行了详细研究。壳厚度的函数。事实证明,去陷阱过程在确定稳态发射特性中起着关键作用。通过研究不同CdSe / Cd_xZn_(1-x)S(x = 0,0.5,1)QD中激发相关的光致发光量子产率(PLQY),我们证明了热和冷载流子俘获率在确定荧光量子中所起的不同作用产量。最后,使用全局分析可以使我们解开复杂的超快速瞬态吸收信号。界面电位的平滑以及有效的表面钝化似乎是减慢基于俄歇和激子俘获复合过程的关键因素。

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