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首页> 外文期刊>ACS nano >Impact of D2O/H2O Solvent Exchange on the Emission of HgTe and CdTe Quantum Dots: Polaron and Energy Transfer Effects
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Impact of D2O/H2O Solvent Exchange on the Emission of HgTe and CdTe Quantum Dots: Polaron and Energy Transfer Effects

机译:D2O / H2O溶剂交换对HgTe和CdTe量子点发射的影响:极化子和能量转移效应

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We have studied light emission kinetics and analyzed carrier recombination channels in HgTe quantum dots that were initially grown in H2O. When the solvent is replaced by D2O, the nonradiative recombination rate changes highlight the role of the vibrational degrees of freedom in the medium surrounding the dots, including both solvent and ligands. The contributing energy loss mechanisms have been evaluated by developing quantitative models for the nonradiative recombination via (i) polaron states formed by strong coupling of ligand vibration modes to a surface trap state (nonresonant channel) and (ii) resonant energy transfer to vibration modes in the solvent. We conclude that channel (i) is more important than (ii) for HgTe dots in either solution. When some of these modes are removed from the relevant spectral range by the H2O to D2O replacement, the polaron effect becomes weaker and the nonradiative lifetime increases. Comparisons with CdTe quantum dots (QDs) served as a reference where the resonant energy loss (ii) a priori was not a factor, also confirmed by our experiments. The solvent exchange (H2O to D2O), however, is found to slightly increase the overall quantum yield of CdTe samples, probably by increasing the fraction of bright dots in the ensemble. The fundamental study reported here can serve as the foundation for the design and optimization principles of narrow bandgap quantum dots aimed at applications in long wavelength colloidal materials for infrared light emitting diodes and photodetectors.
机译:我们研究了发光动力学,并分析了最初在H2O中生长的HgTe量子点中的载流子复合通道。当溶剂被D2O代替时,非辐射复合率的变化突出了点自由介质周围的振动自由度的作用,包括溶剂和配体。通过开发非辐射复合的定量模型,评估了促成的能量损失机制,该定量模型是:(i)配体振动模式与表面陷阱状态(非共振通道)的强耦合形成的极化子状态,以及(ii)共振能量转移至振动模式。溶剂。我们得出结论,对于任何一种解决方案中的HgTe点,通道(i)比(ii)更重要。当通过从H2O到D2O的替换将这些模式中的某些模式从相关光谱范围中删除时,极化子效应变弱,并且非辐射寿命增加。我们的实验也证实了与CdTe量子点(QDs)的比较作为参考,其中共振能量损失(ii)不是先验因素。但是,发现溶剂交换(从H2O到D2O)可以稍微增加CdTe样品的整体量子产率,这可能是通过增加整体中亮点的比例来实现的。此处报道的基础研究可为窄带隙量子点的设计和优化原理奠定基础,该窄带隙量子点旨在用于红外发光二极管和光电探测器的长波长胶体材料。

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