首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Size Dependent Resonance Energy Transfer between Semiconductor Quantum Dots and Dye Using FRET and Kinetic Model
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Size Dependent Resonance Energy Transfer between Semiconductor Quantum Dots and Dye Using FRET and Kinetic Model

机译:使用FRET和动力学模型的半导体量子点和染料之间尺寸相关的共振能量转移

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摘要

In the present study, we demonstrate the size dependent resonance energy transfer from CdSe QDs (donor) to Nile Red dye (acceptor) using steady state and time-resolved spectroscopy. A strong evidence of size dependent efficient resonance energy transfer between CdSe QDs and dye molecules is observed. Using the Forster theory, the calculated energy transfer efficiencies from QD to dye are 8.4, 13.8, and 51.2% for 2.4 nm CdSe, 2.9 nm CdSe, and 3.3 nm CdSe, respectively. A stochastic model for the kinetics of energy transfer from CdSe QDs to Nile Red dye molecules has been proposed to understand the interaction between excited states of CdSe QDs with dye molecules. By analyzing time-resolved fluorescence decay curves of CdSe QDs in the absence and in the presence of Nile Red dye, the values of the rate constant (k_q) for energy transfer per one dye molecule and the efficiency (φ_(ET)) of quenching have been calculated. The estimated energy transfer rates are 0.002, 0.016, and 0.038 ns~(-1) for 2.4 nm CdSe, 2.9 nm CdSe, and 3.3 nm CdSe QDs, respectively, which are well matched with FRET data.
机译:在本研究中,我们证明了使用稳态和时间分辨光谱从CdSe量子点(供体)到尼罗红染料(受体)的尺寸依赖性共振能量转移。观察到CdSe QD和染料分子之间大小依赖的有效共振能量转移的有力证据。使用Forster理论,对于2.4 nm CdSe,2.9 nm CdSe和3.3 nm CdSe,从QD到染料的能量转移效率分别为8.4%,13.8%和51.2%。已经提出了从CdSe量子点到尼罗红染料分子的能量转移动力学的随机模型,以了解CdSe量子点的激发态与染料分子之间的相互作用。通过分析在不存在和存在尼罗红染料的情况下CdSe QD的时间分辨荧光衰减曲线,得出每个染料分子能量转移的速率常数(k_q)和猝灭效率(φ_(ET))的值已经计算了。对于2.4 nm CdSe,2.9 nm CdSe和3.3 nm CdSe QD,估计的能量传输速率分别为0.002、0.016和0.038 ns〜(-1),与FRET数据非常匹配。

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