首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Band Edge Recombination in CdSe, CdS and CdS_xSe_(1-x) Alloy Nanocrystals Observed by Ultrafast Fluorescence Upconversion: The Effect of Surface Trap States
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Band Edge Recombination in CdSe, CdS and CdS_xSe_(1-x) Alloy Nanocrystals Observed by Ultrafast Fluorescence Upconversion: The Effect of Surface Trap States

机译:超快荧光上转换观察CdSe,CdS和CdS_xSe_(1-x)合金纳米晶体中的能带边缘复合:表面陷阱态的影响

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摘要

The effect of surface trap states on band edge recombination in CdSe, CdS and CdS_xSe_(1-x) alloy nanocrystals has been determined using fluorescence upconversion spectroscopy. These measurements reveal that there is both a size and composition dependence on the short-lived (τ1) and long-lived (τ2) components of fluorescence lifetime at the band edge. An increase in nanocrystal diameter, ranging from 23 to 60 A, is accompanied by an increase in τ1. This behavior is explained by the decrease in accessible trap sites through a reduction in surface-to-volume ratio. Similarly, τ2 is found to increase with increasing nanocrystal size. However, with increasing sulfur concentration in the alloy nanocrystals, both a reduction in the magnitude of τ1 and a reversal in the trend for τ2 are observed. These changes in lifetimes associated with the addition of sulfur are explained by increased trapping on the nanocrystal surface. These results indicate that carrier dynamics may be controlled not only through size, but also through composition of the nanocrystals. Compositional variation has been shown not only to affect carrier dynamics, but also to affect the optical properties of nanocrystals. An increase in the Stokes shift is observed for CdS_xSe_(1-x) alloy nanocrystals as compared to CdSe and CdS nanocrystals. This indicates that the Stokes shift is highly influenced by the nonlinear effects of alloying.
机译:已使用荧光上转换光谱法确定了表面陷阱态对CdSe,CdS和CdS_xSe_(1-x)合金纳米晶体中能带边缘复合的影响。这些测量结果显示,在条带边缘,荧光寿命的短寿命(τ1)和长寿命(τ2)成分都与大小和成分有关。纳米晶体直径的范围从23 A增加到60 A,随之而来的是τ1的增加。这种行为可以通过减少表面积与体积之比来减少可到达的陷阱位置来解释。类似地,发现τ2随着纳米晶体尺寸的增加而增加。但是,随着合金纳米晶体中硫浓度的增加,可观察到τ1值的减小和τ2趋势的逆转。这些与硫的添加相关的寿命变化通过纳米晶体表面俘获的增加来解释。这些结果表明,不仅可以通过尺寸,而且可以通过纳米晶体的组成来控制载流子动力学。已经显示出成分变化不仅影响载流子动力学,而且影响纳米晶体的光学性质。与CdSe和CdS纳米晶体相比,CdS_xSe_(1-x)合金纳米晶体的Stokes位移增加。这表明斯托克斯位移受合金化的非线性影响很大。

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