在玻璃表面化学合成银纳米结构的简易 SERS 基底

IF 0.9 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Physics and Chemistry of Solid State Pub Date : 2023-12-13 DOI:10.15330/pcss.24.4.682-691
N. Mazur, O. Kapush, O.F. Isaeva, S. Budzulyak, Anastasiya Buziashvili, Y.V. Pirko, Mykola A. Skoryk, A. Yemets, O. M. Hreshchuk, V. Yukhymchuk, V. Dzhagan
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引用次数: 0

摘要

报告采用基于银镜反应(使用 Tollens 试剂)的改良方法,一步快速制备出高效 SERS 基底。商用显微载玻片或盖玻片(coverlips)均按原样使用,无需特殊表面处理。与常用的两步法不同的是,托伦斯试剂的成分经过改良,使用单步法。通过对几种不同类型的分子进行分析表明,所获得的由密集排列的纳米岛组成的相当均匀的薄膜有望用作表面增强拉曼散射(SERS)的基底。特别是,对标准染料分析物的检测水平(低至 10-14 M 的罗丹明 6G)达到了文献报道的最佳值范围。还能检测到低浓度的某些生物大分子,如溶菌酶(10-4 M)、腺嘌呤(10-4 M)和水杨酸(10-5 M)。对于某些分析物,在液滴中观察到更强的 SERS,而对于其他分析物,则在溶剂干燥后观察到更强的 SERS。本文阐述了产生这种效应的可能原因。通过在惰性气体环境中进行热退火,银膜形态可以部分转化为类似珊瑚的三维结构,这可能有利于分析物在 "热点 "的定位,并允许等离子体共振的额外光谱可调性。
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Facile SERS substrates from Ag nanostructures chemically synthesized on glass surfaces
A quick one-step fabrication of efficient SERS substrates by a modified approach based on a silver-mirror reaction (using Tollens’ reagent) is reported. Commercially available microscope slides or cover glass (coverslips) were used as-received, without special surface treatment. In contrast to the commonly used two-step process, the composition of the Tollens reagent was modified to use a single-step process. The obtained rather homogeneous films of densely packed nanoislands are promising for application as substrates for Surface-Enhanced Raman Scattering (SERS), as demonstrated by several different kinds of molecules as analytes. In particular, the achieved level of detection of a standard dye analyte, down to 10-14 M of Rhodamine 6G, is in the range of best values reported in the literature. Low concentrations of some biomolecules are also detected, such as lysozyme (10-4 M), adenine (10-4 M), and salicylic acid (10-5 M). For some analytes, stronger SERS was observed in the drop, and for others after the solvent was dried. The possible reasons for this effect are described. By applying thermal annealing in the inert gas atmosphere, the Ag film morphology can be partially converted into a coral-like 3D structure that may be advantageous for the localization of the analyte in the “hot spots” and allow additional spectral tunability of the plasmon resonance.  
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CiteScore
1.70
自引率
14.30%
发文量
83
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