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用于表面增强拉曼散射的碱性银胶体及其在三聚氰胺掺杂牛奶检测中的应用

[Alkaline silver colloid for surface enhanced Raman scattering and application to detection of melamine doped milk].

作者信息

Tang Jun-Qi, Tian Chao, Zeng Chong-Yi, Man Shi-Qing

机构信息

Department of Electronic Engineering, Jinan University, Guangzhou, China.

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2013 Mar;33(3):709-13.

Abstract

Alkaline silver colloid with better stability and uniformity was obtained by adding appropriate amount of NaOH to synthesis reaction. The performance of the Ag colloid as surface enhanced Raman scattering (SERS) active substrate was evaluated by methylene blue as the probe molecules and achieved well Raman spectra. The concentration of methylene blue had no effect on the adsorptive behavior of methylene blue on alkaline silver colloid surface in comparison with normal silver colloid. The basic reason for this phenomenon is preferential adsorption of alkaline silver colloid for sulfur atoms of methylene blue so as to increase the intensity of 451 cm-1 Raman peak consistently. The amounts of methylene blue added to alkaline Ag colloid and time-evolution of Raman spectra were also investigated. Additionally, the alkaline silver colloid was prepared to be silver spot and applied to detect melamine doped milk. The relationship of the doping amount of melamine and the Raman signal intensity was obtained. The linearity relationship in the concentration range between 3 and 60 mg.L-1 with detect limit 0.28 mg.L-1 was achieved based on the intensity of 691 cm-1 Raman peak This method required only 5 microL sample size and 5 s for detection and suggested that this presented method with its advantages of speediness, briefness and lower cost has a good application foreground.

摘要

通过在合成反应中加入适量的氢氧化钠,得到了稳定性和均匀性更好的碱性银胶体。以亚甲基蓝为探针分子,评价了银胶体作为表面增强拉曼散射(SERS)活性基底的性能,并获得了良好的拉曼光谱。与普通银胶体相比,亚甲基蓝的浓度对其在碱性银胶体表面的吸附行为没有影响。这种现象的基本原因是碱性银胶体对亚甲基蓝的硫原子有优先吸附作用,从而使451 cm-1拉曼峰的强度持续增加。还研究了添加到碱性银胶体中的亚甲基蓝的量以及拉曼光谱随时间的变化。此外,将碱性银胶体制成银斑,用于检测掺有三聚氰胺的牛奶。得到了三聚氰胺掺杂量与拉曼信号强度的关系。基于691 cm-1拉曼峰的强度,在3至60 mg.L-1的浓度范围内实现了线性关系,检测限为0.28 mg.L-1。该方法仅需5 μL样品量,检测时间为5 s,表明该方法具有快速、简便、成本低等优点,具有良好的应用前景。

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