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Broadband surface-enhanced coherent anti-Stokes Raman spectroscopy with high spectral resolution

机译:具有高光谱分辨率的宽带表面增强的相干反斯托克斯拉曼光谱

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摘要

Both the surface-enhanced Raman spectroscopy (SERS) and coherent anti-Stokes Raman spectroscopy (CARS) are widely used methods in the bio-sensing field for improving the intensity of Raman scattering process. By combining the mechanisms of CARS (coherence and nonlinear process) and SERS (plasmon resonance), a multiplicative enhancement can be achieved through surface-enhanced CARS (SECARS). Besides sensitivity, high specificity with wide spectral bandwidth is also preferred for bio-sensing techniques but not well developed in SECARS setups reported in the literature. In this work, a broadband SECARS setup with high sensitivity and high spectral resolution is presented. Rhodamine 6G dye molecules and several biomolecules are used as the model system to benchmark the functionality of the SECARS system in terms of its sensitivity, the lowest detectable concentration, and the spectral resolution. Our setup rendered single-molecule sensitivity with spectral resolution of <35cm(-1). More than 10(2) times stronger signal-to-noise ratio compared with that of SERS is observed with the detection limit being 10(-9)m. Different from the SECARS systems in the literature, our setup employs a unique graphene-Au pyramids hybrid platform. The graphene in this structure provides additional SERS enhancement and a bio-compatible surface. This powerful technique could be instrumental in furthering the understanding of various chemical and biological processes. Copyright (c) 2017 John Wiley & Sons, Ltd.
机译:表面增强拉曼光谱(SERS)和相干的防斯托克斯拉曼光谱(CARS)是广泛使用的生物传感领域中的方法,用于改善拉曼散射过程的强度。通过组合汽车(相干和非线性过程)和SERS(等离子体共振)的机制,通过表面增强的汽车(SECARS)可以实现乘法增强。除了灵敏度外,对于生物传感技术,具有宽光谱带宽的高特异性也是优选的,但在文献中报告的Secars设置中也不发展。在这项工作中,提出了具有高灵敏度和高光谱分辨率的宽带Secars设置。罗丹明6G染料分子和几种生物分子用作模型系统,以便在其灵敏度,最低可检测浓度和光谱分辨率方面基准测试SECARS系统的功能。我们的设置呈现单分子灵敏度,频谱分辨率为<35cm(-1)。与检测限相比,超过10(2)次的信噪比与检测限相比,检测限为10(-9)m。与文献中的Secars系统不同,我们的设置采用了独特的石墨烯-AU金字塔混合平台。该结构中的石墨烯提供额外的SERS增强和生物兼容的表面。这种强大的技术可能是促进对各种化学和生物过程的理解。版权所有(c)2017 John Wiley&Sons,Ltd。

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