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首页> 外文期刊>ACS Omega >Suppression of the Auger Recombination Process in CdSe/CdS Core/Shell Nanocrystals
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Suppression of the Auger Recombination Process in CdSe/CdS Core/Shell Nanocrystals

机译:CDSE / CDS核心/壳纳米晶体中螺旋钻重组过程的抑制

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We investigate the Auger recombination (AR) rate in CdSe/CdS core/shell nanocrystals (NCs) under different interface confinements in terms of the interface bond relaxation mechanism and Fermi’s golden rule. We find that the epitaxial layer of CdS can not only depress the influence of the Coulomb interaction between electrons and holes, but can also change the wave function and quantum confinement, resulting in the reduction of the AR rate. Moreover, the AR lifetime of CdSe/CdS core/shell NCs at a fixed entire dimension is lower than that of bare CdSe because of interface confinement of the wave function. A great drop of the AR rate can be achieved by adding an alloying layer that depresses the interface effect. Our predictions are in agreement with the available evidence, suggesting that the proposed approach could provide a general method to explore the AR process in core/shell NCs.
机译:在界面粘合放松机制和费米的黄金法则方面,我们在不同的界面限制下调查CDSE / CDS核心/壳纳米晶体(NCS)中的螺旋钻重组(AR)速率。我们发现CD的外延层不仅可以抑制电子和孔之间的库仑相互作用的影响,而且还可以改变波函数和量子限制,导致AR率的降低。此外,由于波浪函数的界面限制,Cdse / CDS核心/壳体NCS的CDSE / CDS核心/壳体NCS的寿命低于裸CDSE。通过添加压下界面效果的合金层可以实现巨大的AR速率。我们的预测与可用证据一致,这表明该方法可以提供探索核心/壳牌NCS中的AR过程的一般方法。

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