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首页> 外文期刊>ACS nano >Superposition Principle in Auger Recombination of Charged and Neutral Multicarrier States in Semiconductor Quantum Dots
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Superposition Principle in Auger Recombination of Charged and Neutral Multicarrier States in Semiconductor Quantum Dots

机译:半导体量子点中带电和中性多载波状态的螺旋钻重组的叠加原理

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Application of colloidal semiconductor quantum dots (QDs) in optical and optoelectronic devices is often complicated by unintentional generation of extra charges, which opens fast nonradiative Auger recombination pathways whereby the recombination energy of an exciton is quickly transferred to the extra carrier(s) and ultimately dissipated as heat. Previous studies of Auger recombination have primarily focused on neutral and, more recently, negatively charged multicarrier states. Auger dynamics of positively charged species remains more poorly explored due to difficulties in creating, stabilizing, and detecting excess holes in the QDs. Here we apply photochemical doping to prepare both negatively and positively charged CdSe/CdS QDs with two distinct core/shell interfacial profiles ("sharp" versus "smooth"). Using neutral and charged QD samples we evaluate Auger lifetimes of biexcitons, "negative and positive trions (an exciton with an extra electron or a hole, respectively), and multiply negatively charged excitons. Using these measurements, we demonstrate that Auger decay of both neutral and charged multicarrier states can be presented as" a superposition of independent elementary three=partide Auger events. As one of the manifestations of the superposition principle, we observe that the biexciton Auger decay rate can be presented as a sum of the Auger rates for independent negative and positive trion pathways. By comparing the measurements on the QDs with the "sharp" versus "smooth" interfaces, we also find that while affecting the absolute values of Auger lifetimes, manipulation of the shape of the confinement potential does not lead to violation of the superposition principle, which still allows us to accurately predict the biexciton Auger lifetimes based on the measured negative and positive trion dynamics. These findings indicate considerable robustness of the superposition principle as applied to Auger decay of charged and" neutral multicarrier states, suggesting its generality to quantum-confined nanocrystals of arbitrary compositions and complexities.
机译:胶体半导体量子点(QDS)在光学和光电器件中的应用通常通过无意产生额外的电荷而复杂,其打开快速的非抗动螺旋钻重组途径,从而快速转移到额外的载体并最终将激子的重组能量转移到额外的载体作为热量散发。以前的螺旋钻重组的研究主要集中在中性和最近,最近,带负电的多载体状态。由于创造,稳定和检测QDS的多余孔困难,螺旋座动态仍然更加难以探索。在这里,我们应用光化学掺杂,以制备带有两个不同的芯/壳界面曲线(“尖锐”而不是“平滑”)的负面和带正电的CDSE / CDS QD。使用中性和充电的QD样品,我们评估了Biexcitons的螺旋钻,“阴性和积极的细长(分别具有额外的电子或孔的激子)和乘以带负电的激子。使用这些测量,我们证明了两个中性的螺旋衰减和收费的多载波状态可以呈现为“独立小学三个=偏见螺旋钻事件的叠加。作为叠加原则的表现之一,我们观察到Biexciton捷速衰减率可以作为独立负极和正球途径的螺旋速率的总和。通过将QD的测量与“夏普”与“锐利”与“平滑”接口进行比较,我们还发现,同时影响螺旋钻的绝对值,操纵监禁潜力的形状不会导致侵犯叠加原则,这仍然允许我们根据测量的负极和积极的动态准确地预测Biexciton捷者的生命周期。这些发现表明,叠加原理的相当稳健性,应用于带电和“中性多载波态的螺旋衰减,表明其对任意组成和复杂性的量子狭窄的纳米晶体的一般性。

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