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Ag Nanorod Arrays for SERS: Aspects of Spectral Reproducibility, Surface Contamination, and Spectral Sensitivity

机译:用于SERS的Ag纳米棒阵列:光谱重现性,表面污染和光谱敏感性的方面

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Ag nanorod arrays prepared by oblique angle vapor deposition (OAD) represent regular, large area substrates for surface-enhanced Raman scattering (SERS) spectroscopy. We studied uniformity and spectral reproducibility of silver OAD-fabricated substrates (AgOADs) by spectral mapping of methylene blue. The results demonstrate good reproducibility apart from occasional “hot-spot” sites where the intensity is higher. The number of “hot-spots” represents 2%–6% of SERS-active sites of mapping substrate area. We were able to obtain good SERS spectra of testing amino acid tryptophan at 1 × 10−5 M concentration and three different free-base porphyrins down to ∼10−7 M concentration. We found out that keeping the AgOADs in a vacuum chamber overnight prevents the surface from binding any contaminants from the ambient atmosphere, without significant reduction in the SERS enhancement. Such substrates provide stable SERS enhancement even when stored for 1 year after preparation.
机译:通过斜角气相沉积(OAD)制备的Ag纳米棒阵列代表用于表面增强拉曼散射(SERS)光谱的规则的大面积基材。我们通过亚甲基蓝的光谱图研究了银OAD制成的基底(AgOAD)的均匀性和光谱可再现性。结果表明,除了强度较高的偶发“热点”站点外,其再现性也很好。 “热点”的数量占制图底物区域的SERS活性位点的2%–6%。我们能够获得良好的SERS光谱,以1 testing×10-5 M的浓度检测氨基酸色氨酸,以及三种低至10-7 M浓度的游离碱卟啉。我们发现,将AgOADs放置在真空室中过夜可防止表面结合来自环境大气的任何污染物,而不会显着降低SERS增强。这样的底物即使在制备后储存一年也可提供稳定的SERS增强。

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