Paggi Laura, Fabas Alice, El Ouazzani Hasnaa, Hugonin Jean-Paul, Fayard Nikos, Bardou Nathalie, Dupuis Christophe, Greffet Jean-Jacques, Bouchon Patrick
DOTA, ONERA, Université Paris-Saclay, Palaiseau, France.
Laboratoire Charles Fabry, Institut d'Optique Graduate School, CNRS, Université Paris-Saclay, Palaiseau, France.
Nat Commun. 2023 Aug 9;14(1):4814. doi: 10.1038/s41467-023-40511-7.
Detection of molecules is a key issue for many applications. Surface enhanced infrared absorption (SEIRA) uses arrays of resonant nanoantennas with good quality factors which can be used to locally enhance the illumination of molecules. The technique has proved to be an effective tool to detect small amount of material. However, nanoresonators can detect molecules on a narrow bandwidth so that a set of resonators is necessary to identify a molecule fingerprint. Here, we introduce an alternative paradigm and use low quality factor resonators with large radiative losses (over-coupled resonators). The bandwidth enables to detect all absorption lines between 5 and 10 μm, reproducing the molecular absorption spectrum. Counterintuitively, despite a lower quality factor, the system sensitivity is improved and we report a reflectivity variation as large as one percent per nanometer of molecular layer of PMMA. This paves the way to specific identification of molecules. We illustrate the potential of the technique with the detection of the explosive precursor 2,4-dinitrotoluene (DNT). There is a fair agreement with electromagnetic simulations and we also introduce an analytic model of the SEIRA signal obtained in the over-coupling regime.
分子检测是许多应用中的关键问题。表面增强红外吸收(SEIRA)利用具有高品质因数的共振纳米天线阵列,可用于局部增强分子的光照。该技术已被证明是检测少量物质的有效工具。然而,纳米谐振器只能在窄带宽内检测分子,因此需要一组谐振器来识别分子指纹。在此,我们引入一种替代范例,使用具有大辐射损耗的低品质因数谐振器(过耦合谐振器)。该带宽能够检测5至10μm之间的所有吸收线,再现分子吸收光谱。与直觉相反,尽管品质因数较低,但系统灵敏度得到了提高,我们报告了每纳米PMMA分子层的反射率变化高达1%。这为分子的特异性识别铺平了道路。我们通过检测爆炸前体2,4-二硝基甲苯(DNT)来说明该技术的潜力。与电磁模拟结果相当吻合,我们还引入了在过耦合 regime中获得的SEIRA信号的解析模型。