IPCF-CNR, Istituto per i Processi Chimico-Fisici, V.le F.S. d'Alcontres 37, 98158 Messina, Italy.
Arpa Sicilia UOC Area Mare, Lungomare Cristoforo Colombo 4521, Loc. Addaura, 90149 Palermo, Italy.
Molecules. 2021 Apr 19;26(8):2360. doi: 10.3390/molecules26082360.
Surface Enhanced Raman Spectroscopy is commonly used as analytical improvement to conventional Raman spectroscopy, able to respond to qualitative diagnostic enquiries, which involve low-concentrated molecular species in complex matrix. In this paper, we described fabrication, characterization and testing of a type of SERS-active substrates realized specifically to detect pigments in work of art. In particular, we detailed the SERS activity of nanostructured noble metal films deposited by pulsed laser ablation onto glass and polishing sheets substrates. The SERS response of the substrates was tested against the presence of some organic dyes in aqueous solutions. Measurements were performed at different pH values, in acidic or basic range, in order to investigate its role in the adsorption mechanism, thus fostering the SERS amplification. In addition, we checked the possible deterioration of the structural properties of the substrates that could occur in presence of alkaline or acidic environment. SERS activity of the substrates was tested against a commonly dye used as a SERS standard (Blue Methylene). Thereafter, substrates have been tested on two organic dyes (Alizarine red-S and Brazilwood), which had proven to be Raman active but present also either a weak Raman scattering cross section and/or a high fluorescence emission. The substrates have proven effective in amplifying Raman scattering of all dyes, quenching troubling fluorescence effects. Furthermore, they have proven to be stable in the pH range between 3 and 11. Furthermore, we carry out of vibrational DFT-calculation of dyes that provide a complete description of the observed SERS spectra.
表面增强拉曼光谱通常被用作常规拉曼光谱的分析改进,可以响应定性诊断询问,涉及复杂基质中低浓度的分子种类。在本文中,我们描述了一种特定用于检测艺术品中颜料的 SERS 活性基底的制造、表征和测试。特别是,我们详细介绍了通过脉冲激光烧蚀在玻璃和抛光片基底上沉积的纳米结构贵金属薄膜的 SERS 活性。测试了基底对水溶液中一些有机染料的 SERS 响应。在酸性或碱性范围内,在不同的 pH 值下进行了测量,以研究其在吸附机制中的作用,从而促进 SERS 放大。此外,我们检查了在碱性或酸性环境中可能发生的基底结构性质的恶化。用一种常用的作为 SERS 标准的染料(蓝色亚甲蓝)测试了基底的 SERS 活性。然后,对两种有机染料(茜素红-S 和巴西苏木)进行了基底测试,这两种染料已被证明具有拉曼活性,但拉曼散射截面较弱和/或荧光发射较强。基底已被证明可有效放大所有染料的拉曼散射,抑制令人困扰的荧光效应。此外,它们在 pH 值为 3 到 11 之间的范围内表现出稳定。此外,我们对染料进行了振动 DFT 计算,为观察到的 SERS 光谱提供了完整的描述。