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Influence of quantum dot concentration on Forster resonant energy transfer in monodispersed nanocrystal quantum dot monolayers

机译:量子点浓度对单分散纳米晶体量子点单层中Forster共振能量转移的影响

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摘要

The quantum dot (QD) concentration dependence of the optical properties of QD monolayers is shown to be dominated by Foerster resonant energy transfer (FRET) from smaller to larger QDs in the ensemble. With increasing QD concentration a redshift of the peak emission wavelength, a shortening of the photolumines-cence lifetime of the QDs on the high-energy side of the ensemble emission spectrum as well as increased difference in the lifetimes on the high- and low-energy sides are observed in the layer-by-layer deposited QD monolayers. There is also evidence of an increased rise time in the time-resolved photoluminescence decays on the low-energy side of the QD emission for two of the three samples presented in most detail. A theory of FRET in two dimensions is applied to explain the lifetime decrease on the high-energy side of the ensemble emission and confirms that the impact of the QD concentration on the optical properties is primarily due to FRET from the smaller to larger QDs in the ensemble. The concentration effects are stronger in QD samples which have a broader emission peak compared to the Stokes shift. Based on good agreement with FRET theory, the QD concentration and the overlap of the QD emission and absorption peaks can both be used to control the efficiency of the FRET process in monodispersed QD layers.
机译:QD单层光学特性的量子点(QD)浓度依赖性显示为从集合中的较小QD到较大QD的Foerster共振能量转移(FRET)占主导地位。随着QD浓度的增加,峰值发射波长发生红移,集合发射光谱高能侧的QD的光致发光寿命缩短,以及高能和低能寿命的差异增加在逐层沉积的QD单层中观察到了两面。对于最详细呈现的三个样品中的两个,也有证据表明,在QD发射的低能侧,时间分辨的光致发光衰减的上升时间增加。应用二维FRET理论来解释整体发射高能侧的寿命降低,并确认QD浓度对光学性能的影响主要是由于FRET从较小QD到较大QD所致。合奏。与斯托克斯频移相比,具有更宽发射峰的量子点样品中的浓度效应更强。基于与FRET理论的良好一致性,QD浓度以及QD发射峰和吸收峰的重叠都可用于控制单分散QD层中FRET过程的效率。

著录项

  • 来源
    《Physical review》 |2010年第20期|P.205316.1-205316.10|共10页
  • 作者单位

    Semiconductor Photonics Group, School of Physics, Trinity College Dublin, Dublin 2, Ireland;

    rnSemiconductor Photonics Group, School of Physics, Trinity College Dublin, Dublin 2, Ireland;

    rnSchool of Chemistry, Trinity College Dublin, Dublin 2, Ireland;

    rnSchool of Chemistry, Trinity College Dublin, Dublin 2, Ireland;

    rnSchool of Chemistry, Trinity College Dublin, Dublin 2, Ireland;

    rnSchool of Chemistry, Trinity College Dublin, Dublin 2, Ireland;

    rnPhysical Chemistry, TU Dresden, Bergstrasse 66b, 01062 Dresden, Germany;

    rnPhysical Chemistry, TU Dresden, Bergstrasse 66b, 01062 Dresden, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    quantum dots; self-assembly; state to state energy transfer;

    机译:量子点;自组装;州与州之间的能源转移;

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