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Preparation and characterization of SERS substrates: From colloids to solid substrates

机译:SERS底物的制备和表征:从胶体到固体底物

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Surface enhanced Raman spectroscopy is an important technique for detection of wide number of analytes. Today, there is a growing need for the development of stable, sensitive, reproducible and portable SERS-active substrates for use in different fields. Some of the most extensively used SERS substrates are metal colloids. However, the use of the colloid solutions for SERS deals with important issues, like stability and reproducibility. Other popular types of substrates are rough or nanoporous surfaces, such as porous silicon, coated with noble metals. Porous silicon (pSi) is a semiconducting material typically obtained by electrochemical etching in hydrofluoric acid (HF). Due to its high surface-to-volume ratio pSi is an interesting material for photonic and sensing devices, drug delivery systems as well as for use in SERS. In this paper, attempts are made to prepare a stable and uniform noble metal colloidal solution as well as solid substrate using porous silicon (pSi) with deposited silver and gold nanostructures. SERS substrates obtained by different methods are evaluated for SERS efficiency using methylene blue and rhodamine 6G (R6G) at 514.5 and 633 nm. The prepared substrates showed good stability and reproducibility. For some substrates the concentrations detected were below nanomolar range.
机译:表面增强拉曼光谱法是检测大量分析物的重要技术。如今,对用于不同领域的稳定,敏感,可复制和便携式SERS活性基质的开发需求日益增长。一些使用最广泛的SERS底物是金属胶体。但是,将胶体溶液用于SERS会解决一些重要问题,例如稳定性和可重复性。其他流行的基材类型是粗糙或纳米多孔的表面,例如涂覆有贵金属的多孔硅。多孔硅(pSi)是一种半导体材料,通常通过在氢氟酸(HF)中进行电化学蚀刻获得。由于其高的体积比,pSi是光子和传感设备,药物输送系统以及用于SERS的有趣材料。在本文中,尝试使用具有沉积的银和金纳米结构的多孔硅(pSi)来制备稳定且均匀的贵金属胶体溶液以及固体基质。使用亚甲基蓝和若丹明6G(R6G)在514.5和633 nm处评估通过不同方法获得的SERS底物的SERS效率。制备的底物显示出良好的稳定性和再现性。对于某些底物,检测到的浓度低于纳摩尔范围。

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