Opt Express. 2022 Apr 11;30(8):12387-12396. doi: 10.1364/OE.455350.
Surface-enhanced Raman scattering (SERS) is a powerful analytical method that is especially suitable for the detection of protein molecules. Detection sensitivity of SERS is directly related to the enhancement factor of the substrate, which is dependent on the strength of a local surface electric field generated by surface plasmonic resonance from substrate. In this study, an electromagnetic induced transparency like (EIT-like) metamaterial was used as the SERS substrate. The corresponding plasmonic resonance structure not only produces stronger optical near field but also reduces the spectral line broadening due to radiation damping. This is very beneficial for SERS process, which is strongly dependent on electric field intensity, to improve the sensitivity of SERS detection. Compared with the single resonance mode substrate, the enhancement factor for SERS with the double-mode substrate was increased by an order of magnitude. The obtained EIT-like substrate was used as a SERS-active substrate to detect Lens culinaris agglutinin (LCA)-reactive fraction of AFP (AFP-L3), a hepatocellular carcinoma (HCC)-specific maker. Experimental results are in good agreement with the clinical diagnosis, which demonstrates the potential application of metamaterials in the SERS-based diagnosis and biosensing.
表面增强拉曼散射(SERS)是一种强大的分析方法,特别适合于蛋白质分子的检测。SERS 的检测灵敏度直接与基底的增强因子有关,而增强因子又取决于基底表面等离子体共振产生的局域表面电场强度。在本研究中,采用类电磁感应透明(EIT-like)超材料作为 SERS 基底。相应的等离子体共振结构不仅产生更强的光近场,而且由于辐射阻尼减少光谱线展宽。这对于强烈依赖于电场强度的 SERS 过程非常有利,从而提高了 SERS 检测的灵敏度。与单共振模式基底相比,双模式基底的 SERS 增强因子提高了一个数量级。所获得的类 EIT 基底被用作 SERS 活性基底来检测 Lens culinaris agglutinin(LCA)-reactive fraction of AFP(AFP-L3),一种肝细胞癌(HCC)特异性标志物。实验结果与临床诊断吻合良好,这证明了超材料在基于 SERS 的诊断和生物传感中的潜在应用。