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Tailoring surface plasmons of high-density gold nanostar assemblies on metal films for surface-enhanced Raman spectroscopy

机译:在表面增强拉曼光谱的金属膜上定制高密度金纳米星组件的表面等离激元

摘要

Plasmonic systems based on metal nanoparticles on a metal film have generated great interest for surface-enhanced Raman spectroscopy (SERS) chemical sensors. In this study, we describe the fabrication of ultrasensitive SERS substrates based on high-density gold nanostar assemblies on silver films with tailored surface plasmons, where multiple field enhancements from particle-film and interparticle plasmon couplings and lightening rod effects of sharp tips of nanostars contribute to the enormous Raman enhancements. We show that the interplay between interparticle and particle-film plasmon couplings of high-density gold nanostars (GNSs) on metal and dielectric films as a function of interparticle separation can be tailored to provide maximum SERS effects. We observe that the SERS enhancement factor (EF) of GNSs on a metal film as a function of interparticle separation follows a broken power law function, where the EF increases with the interparticle separation for the strong interparticle coupling range below an interparticle separation of ∼0.8 times the GNS size, but decreases for the weak interparticle coupling range (for an interparticle separation of >0.8 times the GNS size). Finally, we demonstrate the use of tailored plasmonic substrates as ultrasensitive SERS chemical sensors with an attomole level of detection capability of 2,4-dinitrotoluene, a model compound of nitroaromatic explosives.
机译:基于金属膜上金属纳米粒子的等离子系统引起了表面增强拉曼光谱(SERS)化学传感器的极大兴趣。在这项研究中,我们描述了基于高密度金纳米星组件的超敏感SERS基底的制造,该银组件具有定制的表面等离激元,其中粒子膜和粒子间等离激元耦合的多场增强以及纳米星尖尖的避雷针效应做出了贡献巨大的拉曼增强。我们显示金属和介电膜上的高密度金纳米星(GNSs)的粒子间和粒子膜等离子体激元耦合之间的相互作用可以作为粒子间分离的函数,以提供最大的SERS效果。我们观察到金属膜上GNSs的SERS增强因子(EF)作为颗粒间分离的函数遵循破碎的幂定律函数,其中EF在颗粒间分离度低于〜0.8的情况下随颗粒间分离的增加而在较强的颗粒间耦合范围内增加是颗粒大小的两倍,但对于较弱的粒子间耦合范围则减小(对于大于0.8倍的GNS大小的粒子间距离)。最后,我们证明了使用量身定制的等离子激元作为超敏感SERS化学传感器,具有2,4-二硝基甲苯(一种硝基芳香族炸药的模型化合物)的检测能力,达到了原子级水平。

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