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Chemically Stable Au Nanorods as Probes for Sensitive Surface Enhanced Scattering (SERS) Analysis of Blue BIC Ballpoint Pens

机译:化学稳定的Au纳米棒作为敏感表面增强散射(SERS)分析的探针蓝色BIC圆珠笔钢笔

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Au nanorods were used as an alternative to commonly used Ag nanoparticles as Surface Enhanced Raman Scattering (SERS) probes for identification of dye composition of blue BIC ballpoint pens. When used in combination with Thin Layer Chromatography (TLC), Au nanorod colloids allowed identification of the major dye components of the BIC pen ink, otherwise not identifiable by normal Raman spectroscopy. Thanks to their enhanced chemical stability compared to Ag colloids, Au nanorods provided stable and reproducible SERS signals and allowed easy identification of phthalocyanine and triarylene dyes in the pen ink mixture. These findings were supported by FTIR and MALDI analyses, also performed on the pen ink. Furthermore, the self-assembly of Au nanorods into large area ordered superstructures allowed identification of BIC pen traces. SERS spectra of good intensity and high reproducibility were obtained using Au nanorod vertical arrays, due to the high density of hot spots and morphological reproducibility of these superstructures. These results open the way to the employment of SERS for fast screening analysis and for quantitative analysis of pens and faded pens which are relevant for the fields of forensic and art conservation sciences.
机译:Au nanorods用作常用的Ag纳米颗粒作为表面增强拉曼散射(SERS)探针的替代方案,用于鉴定蓝色BIC圆珠笔铅的染料组合物。当与薄层色谱(TLC)组合使用时,Au Nanorod胶体允许鉴定Bic Pen墨水的主要染料组分,否则不能通过正常的拉曼光谱识别。由于其与Ag胶体相比增强了化学稳定性,Au Nanorods提供了稳定和可重复的SERS信号,并且允许易于鉴定Ph酞菁和三芳基染料中的Ph酞菁混合物。这些发现由FTIR和MALDI分析支持,也在PEN油墨上进行。此外,Au nanorods的自组装成大面积有序的上层结构允许识别BIC笔痕迹。由于这些上部结构的热点密度和形态再现性,使用Au Nanorod垂直阵列获得了良好强度和高再现性的SERS光谱。这些结果对SERS的采用开放方式,用于快速筛选分析,以及对钢笔和褪色钢笔的定量分析,这与法医学和艺术保护科学领域相关。

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