Cunningham Stephen, Hrelescu Calin, Bradley A Louise
Opt Express. 2021 Jul 5;29(14):22288-22298. doi: 10.1364/OE.434135.
We propose an alternative method to dynamically tune luminescence enhancement in the near infrared spectral range using noble metal nanostructures on top of phase change material vanadium dioxide (VO) thin films. The VO phase change is used to tune the nanodisc plasmon resonance providing a luminescence modification mechanism. We employ a model to calculate the emission of quantum emitters, such as dye molecules, in hybrid systems comprising single silver (Ag) nanodiscs on top of a thin layer of VO. The model considers different dipole orientations and positions with respect to the nanostructure-VO film and determines the degree of observable luminescence modification. In the NIR spectral region, the observable photoluminescence of Alexa Dyes in the hybrid systems at room temperature is enhanced by more than a factor of 2.5 as compared to the same system without plasmonic particles. An additional photoluminescence enhancement by more than a factor of 2 can be achieved with the Ag nanodisc-VO film systems after the phase transition of the VO. These systems can be used for tunable luminescence modification and for compensation of thermally induced luminescence quenching. Through optimization of the Ag nanodisc-VO film system, luminescence enhancements of up to a factor of 4 can be seen in the metallic VO compared to the semiconducting phase and would therefore compensate for a thermal quenching of up to 70% between room temperature and 70° C, rendering the hybrid systems as promising candidates for improved photon management in optoelectronic devices where elevated temperatures minimize the efficiencies of such devices.
我们提出了一种替代方法,通过在相变材料二氧化钒(VO)薄膜上使用贵金属纳米结构,在近红外光谱范围内动态调节发光增强。VO相变用于调节纳米盘等离子体共振,提供一种发光修饰机制。我们采用一个模型来计算包含在VO薄层顶部的单个银(Ag)纳米盘的混合系统中量子发射器(如染料分子)的发射。该模型考虑了相对于纳米结构-VO薄膜的不同偶极取向和位置,并确定了可观察到的发光修饰程度。在近红外光谱区域,与没有等离子体粒子的相同系统相比,混合系统中Alexa染料在室温下的可观察到的光致发光增强了2.5倍以上。在VO发生相变后,Ag纳米盘-VO薄膜系统可以实现额外的超过2倍的光致发光增强。这些系统可用于可调谐发光修饰和热致发光猝灭的补偿。通过优化Ag纳米盘-VO薄膜系统,与半导体相相比,在金属态VO中可以看到高达4倍的发光增强,因此可以补偿室温至70°C之间高达70%的热猝灭,使混合系统成为改善光电器件中光子管理的有前途的候选者,因为高温会降低此类器件的效率。