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基于双Fano共振实现的用于生物应用的多功能表面增强拉曼散射芯片

Multifunctional SERS Chip for Biological Application Realized by Double Fano Resonance.

作者信息

Zhu Weile, Wang Huiyang, Wang Yuheng, Liu Shengde, Di Jianglei, Zhong Liyun

机构信息

Guangdong Provincial Key Laboratory of Photonics Information Technology, Guangdong University of Technology, Guangzhou 510006, China.

School of Optoelectronic Science and Engineering, South China Normal University, Guangzhou 510006, China.

出版信息

Nanomaterials (Basel). 2024 Dec 19;14(24):2036. doi: 10.3390/nano14242036.

Abstract

The in situ and label-free detection of molecular information in biological cells has always been a challenging problem due to the weak Raman signal of biological molecules. The use of various resonance nanostructures has significantly advanced Surface-enhanced Raman spectroscopy (SERS) in signal enhancement in recent years. However, biological cells are often immersed in different formulations of culture medium with varying refractive indexes and are highly sensitive to the temperature of the microenvironment. This necessitates that SERS meets the requirements of refractive index insensitivity, low thermal damage, broadband enhancement, and other needs in addition to signal enhancement. Here, we propose a SERS chip with integrated dual Fano resonance and the corresponding analytical model. This model can be used to quickly lock the parameters and then analyze the performance of the dual resonance SERS chip. The simulation and experimental characterization results demonstrate that the integrated dual Fano resonances have the ability for independent broadband tuning. This capability enhances both the excitation and radiation processes of Raman signals simultaneously, ensuring that the resonance at the excitation wavelength is not affected by the culture medium (the refractive index) and reduces heat generation. Furthermore, the dual Fano resonance modes can synergize with each other to greatly enhance both the amplitude and enhanced range of the Raman signal, providing a stable, reliable, and comprehensive detection tool and strategy for fingerprint signal detection of bioactive samples.

摘要

由于生物分子的拉曼信号较弱,在生物细胞中进行分子信息的原位无标记检测一直是一个具有挑战性的问题。近年来,各种共振纳米结构的使用显著推动了表面增强拉曼光谱(SERS)在信号增强方面的发展。然而,生物细胞常常浸没在具有不同折射率的各种培养基配方中,并且对微环境的温度高度敏感。这就要求SERS除了信号增强之外,还要满足对折射率不敏感、低热损伤、宽带增强等需求。在此,我们提出一种具有集成双Fano共振的SERS芯片以及相应的分析模型。该模型可用于快速锁定参数,进而分析双共振SERS芯片的性能。模拟和实验表征结果表明,集成双Fano共振具有独立宽带调谐的能力。这种能力同时增强了拉曼信号的激发和辐射过程,确保激发波长处的共振不受培养基(折射率)影响,并减少热量产生。此外,双Fano共振模式可以相互协同,极大地增强拉曼信号的幅度和增强范围,为生物活性样品的指纹信号检测提供了一种稳定、可靠且全面的检测工具和策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7da8/11676296/90079303e070/nanomaterials-14-02036-g001.jpg

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Electromagnetic theories of surface-enhanced Raman spectroscopy.电磁理论在表面增强拉曼光谱学中的应用。
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