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Effect of Surface Ligands on Optical and Electronic Spectra of Semiconductor Nanoclusters

机译:表面配体对半导体纳米团簇的光谱和电子光谱的影响

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摘要

We investigate the impact of ligands on the morphology, electronic structure, and optical response of the Cd_(33)Se_(33) cluster, which overlaps in size with the smallest synthesized CdSe nanocrystal quantum dots (QDs). Our density functional theory calculations demonstrate significant surface reorganization for both the bare cluster and the cluster capped with amine or phosphine oxide model ligands. We observe strong surface-ligand interactions leading to substantial charge redistribution and polarization effects on the surface. These effects result in the development of hybridized states, for which the electronic density is spread over the cluster and the ligands. The loss of one of the passivating ligands leads to either optically dark or bright additional states inside of the band gap, depending on the position of the leaving ligand on the QD surface. However, for fully ligated QDs, neither the ligand-localized nor hybridized molecular orbitals appear as trap states inside or near the band gap of the QD. Instead, being mostly optically dark, dense hybridized states could open new relaxation channels for high-energy photoexcitations. Comparing QDs passivated by different ligands, we also found that hybridized states are denser at the edge of the conduction band of the cluster ligated with phosphine oxide molecules than that with primary amines. Such a different manifestation of ligand binding may potentially lead to faster electron relaxation in QDs passivated by phosphine oxide than by amine ligands.
机译:我们研究了配体对Cd_(33)Se_(33)簇的形态,电子结构和光学响应的​​影响,该簇在尺寸上与最小的合成CdSe纳米晶体量子点(QDs)重叠。我们的密度泛函理论计算结果表明,无论是裸簇还是被胺或氧化膦模型配体封端的簇,表面重组都非常明显。我们观察到强烈的表面-配体相互作用,导致表面上的大量电荷重新分布和极化效应。这些效应导致杂交状态的发展,其电子密度分布在簇和配体上。钝化配体之一的损失会导致带隙内部出现光学上暗或亮的附加状态,具体取决于QD表面上剩余配体的位置。但是,对于完全连接的量子点,配体定位分子链或杂化分子轨道都不会以量子阱带隙内或附近的陷阱态出现。取而代之的是,在光学上几乎是黑暗的,密集的杂交态可以为高能光激发开辟新的弛豫通道。比较不同配体钝化的量子点,我们还发现,与氧化膦分子连接的簇的导带边缘处的杂化态比与伯胺的杂化态更密集。配体结合的这种不同表现可能潜在导致氧化膦钝化的QD中的电子弛豫比胺配体更快。

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  • 来源
    《Journal of the American Chemical Society》 |2009年第22期|7717-7726|共10页
  • 作者单位

    Theoretical Division, Center for Nonlinear Studies (CNLS), Chemistry: Division, and Center for Integrated Nanotechnologies (CINT), Los Alamos National Laboratory, Los Alamos, New Mexico 87545;

    Theoretical Division, Center for Nonlinear Studies (CNLS), Chemistry: Division, and Center for Integrated Nanotechnologies (CINT), Los Alamos National Laboratory, Los Alamos, New Mexico 87545;

    Theoretical Division, Center for Nonlinear Studies (CNLS), Chemistry: Division, and Center for Integrated Nanotechnologies (CINT), Los Alamos National Laboratory, Los Alamos, New Mexico 87545;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:16:57

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