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Excitation Wavelength-Dependent PhotoluminescenceDecay of Hybrid Gold/Quantum Dot Nanostructures

机译:激发波长相关的光致发光混合金/量子点纳米结构的衰减

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摘要

Hybrid nanostructures comprised of metal nanoparticles (MNPs) and quantum dots (QDs) have been found to exhibit unique, new optical properties due to the interaction that occurs between the MNPs and QDs. The aim of this work is to understand how the exciton–plasmon interaction in these systems is dependent on the excitation wavelength. The nanoassemblies consisted of gold (Au) NPs coated in a silica (SiO2) shell of a controlled thickness and core/shell CdSe/CdS QDs adsorbed onto the SiO2 shells. Our findings show that the photoluminescence lifetimes of the hybrid constructs are dependent on the excitation wavelength relative to the localized surface plasmon resonance (LSPR) of the Au NPs. When the excitation wavelength is closer to the LSPR, the photoluminescence decay of the hybrid structures is faster. We demonstrate that by tuning the excitation wavelength close to the resonance, there is an enhancement in the exciton–plasmon coupling between the Au NPs and QDs resulting in a shortening in the QD photoluminescence lifetime. We then propose a possible mechanism to explain this excitation wavelength-dependent phenomenon.
机译:已经发现,由金属纳米颗粒(MNP)和量子点(QD)组成的杂化纳米结构由于在MNP和QD之间发生相互作用而表现出独特的新光学特性。这项工作的目的是了解这些系统中的激子-等离激元相互作用如何取决于激发波长。纳米组件由涂覆在厚度受控的二氧化硅(SiO2)壳中的金(Au)NP和吸附在SiO2壳上的核/壳CdSe / CdS QD组成。我们的发现表明,杂化构建体的光致发光寿命取决于相对于Au NPs的局部表面等离振子共振(LSPR)的激发波长。当激发波长更接近LSPR时,杂化结构的光致发光衰减更快。我们证明,通过将激发波长调整到接近共振,Au NP和QD之间的激子-等离激元耦合增强,导致QD光致发光寿命缩短。然后,我们提出了一种可能的机制来解释这种与激发波长有关的现象。

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