School of Chemistry and Biological Engineering , Changsha University of Science and Technology , Changsha , Hunan 410076 , People's Republic of China.
School of Food Science , Washington State University , Pullman , Washington 99165 , United States.
J Agric Food Chem. 2018 Mar 21;66(11):2954-2961. doi: 10.1021/acs.jafc.8b00007. Epub 2018 Mar 6.
Synthetic colorants in food can be a potential threat to human health. In this study, surface-enhanced Raman spectroscopy (SERS) coupled with gold nanorods as substrates is proposed to analyze allura red and sunset yellow in beverages. The gold nanorods with different aspect ratios were synthesized, and their long-term stability, SERS activity, and the effect of the different salts on the SERS signal were investigated. The results demonstrate that gold nanorods have a satisfactory stability (stored up to 28 days). SERS coupled with gold nanorods exhibit stronger sensitivity. MgSO was chosen to improve the SERS signal of sunset yellow, and no salts could enhance the SERS signal of allura red. The lowest concentration was 0.10 mg/L for both colorant standard solutions. The successful prediction results using SERS were much closer to those obtained by high-performance liquid chromatography for the sample in beverages. SERS combined with gold nanorods shows potential for analyzing food colorants and other food additives as a rapid, convenient, and sensitive method.
食品中的合成色素可能对人类健康构成潜在威胁。在这项研究中,提出了表面增强拉曼光谱(SERS)与金纳米棒结合来分析饮料中的诱惑红和日落黄。合成了不同纵横比的金纳米棒,并研究了它们的长期稳定性、SERS 活性以及不同盐对 SERS 信号的影响。结果表明,金纳米棒具有令人满意的稳定性(可储存长达 28 天)。SERS 与金纳米棒结合具有更强的灵敏度。选择 MgSO 来提高日落黄的 SERS 信号,而没有盐可以增强诱惑红的 SERS 信号。两种着色剂标准溶液的最低浓度均为 0.10mg/L。使用 SERS 进行的成功预测结果与饮料中样品的高效液相色谱法获得的结果更为接近。SERS 与金纳米棒结合作为一种快速、方便、灵敏的方法,显示出分析食品着色剂和其他食品添加剂的潜力。