Surface enhanced infrared absorption mechanism and modification of the plasmonic response

IF 4.6 Q1 OPTICS Journal of Physics-Photonics Pub Date : 2024-02-16 DOI:10.1088/2515-7647/ad2529
Tanguy Colleu, Adam Fekete, Xavier Gonze, Alexandre Cloots, Vincent Liégeois, Gian-Marco Rignanese, Luc Henrard
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Abstract

Surface enhanced infrared absorption (SEIRA) is an experimental method where trace amount of a compound can be detected with high sensibility. This high detection sensibility is the result of the interaction of the molecules with a localized plasmon, usually from a metallic nanoparticle. In this study we numerically investigate by discrete dipole approximation the origin of the Fano-like response of the system, including the induced transparency when the plasmon resonance and the molecular vibrational mode coincide. The detailed analysis of the localization of the absorption shows that the modification of the absorption cross-section when the molecule is present comes from a change of the plasmonic resonance, not from the direct molecular response which is negligible. This sheds a new light on the SEIRA mechanism. In particular, it demonstrates that the sensibility is associated with the influence of the molecule on the plasmon resonance rather than with the local field enhancement itself.
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表面增强红外吸收机制与等离子体响应的改变
表面增强红外吸收(SEIRA)是一种可以高灵敏度检测痕量化合物的实验方法。这种高检测灵敏度是分子与局部等离子体(通常来自金属纳米粒子)相互作用的结果。在本研究中,我们通过离散偶极子近似对系统的法诺样响应进行了数值研究,包括等离子体共振与分子振动模式重合时的诱导透明度。对吸收定位的详细分析表明,当分子存在时,吸收截面的改变来自质子共振的变化,而不是直接的分子响应,后者可以忽略不计。这为 SEIRA 机制带来了新的启示。特别是,它证明了灵敏度与分子对等离子共振的影响有关,而不是与局部场增强本身有关。
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来源期刊
CiteScore
10.70
自引率
0.00%
发文量
27
审稿时长
12 weeks
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