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基于银胶的表面增强拉曼散射法对半定量分析龙胆紫

Semi-quantitative analysis of gentian violet by surface-enhanced Raman spectroscopy using silver colloids.

机构信息

MOE Key Laboratory of Laser Life Science & Institute of Laser Life Science, College of Biophotonics, South China Normal University, 510631, Guangzhou, China.

出版信息

Appl Spectrosc. 2010 Nov;64(11):1301-7. doi: 10.1366/000370210793334990.

Abstract

The viability of the application of surface-enhanced Raman spectroscopy (SERS) to the semi-quantitative analysis of the triphenylmethane dye gentian violet was examined by using activated borohydride-reduced silver colloids. Raman and SERS spectra of aqueous solutions of gentian violet at different pH values were acquired for the first time and equally intense SERS signals were obtained at both acidic and alkaline pH values. Two maxima intensities observed in the pH profile revealed the presence of different ionization states of the dye. The pH conditions for SERS were optimized over the pH range 1 to 12 and the biggest enhancement for SERS of this charged dye was found to be at pH 2.0; thus, this condition was used for semi-quantitative analysis. A good linear correlation was observed for the dependence of the signal intensities of the SERS bands at 1620 cm(-1) (R = 0.999) and 1370 cm(-1) (R = 0.952) on dye concentration over the range 10(-6) to 10(-4) mol/L, using laser excitation at 514.5 nm. At concentrations of dye above 10(-2) mol/L, the concentration dependence of the SERS signals is nonlinear. This is explained as due to the precipitation of metallic silver as well as due to saturation caused by complete coverage of the SERS substrate. A series of intensities of the band at 1620 cm(-1) measured from dye molecules proved that the single-molecule limit of gentian violet is attained at the concentration of 10(-9) mol/L.

摘要

应用表面增强拉曼光谱(SERS)对半定量分析三苯甲烷染料结晶紫的可行性进行了研究,使用的是经活化硼氢化还原的银胶体。首次获得了不同 pH 值下结晶紫水溶液的拉曼和 SERS 光谱,在酸性和碱性 pH 值下均获得了同等强度的 SERS 信号。在 pH 图谱中观察到的两个最大值强度表明染料存在不同的电离状态。对 SERS 的 pH 条件进行了优化,优化范围为 1 到 12,发现这种带电荷染料的 SERS 最大增强是在 pH 2.0;因此,该条件用于半定量分析。在 514.5nm 激光激发下,观察到 SERS 谱带在 1620cm(-1)(R = 0.999)和 1370cm(-1)(R = 0.952)处的信号强度与染料浓度之间存在良好的线性关系,线性范围为 10(-6)到 10(-4)mol/L。在染料浓度高于 10(-2)mol/L 时,SERS 信号的浓度依赖性是非线性的。这可以解释为由于形成了金属银沉淀以及由于 SERS 基底完全被覆盖而导致的饱和。从染料分子测量的 1620cm(-1)处的一系列强度证明,在 10(-9)mol/L 的浓度下达到了结晶紫的单分子极限。

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