Detection of melamine in infant milk powder by micro-Raman spectroscopy using biosynthesized zinc oxide nanoparticles

Hariish Chandrasekar, Preetha Radhakrishnan , Krishna H. Menon, Sreejit Valiathan, Akhil Silla, S. Prasanna Raghavender
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Abstract

Zinc oxide nanoparticles (ZnO-NPs) were green synthesized using Carica papaya peel extract as a reducing agent and used to develop a novel Micro Raman Spectroscopy method to detect melamine in infant milk powder. Citrate was coated on the biosynthesized ZnO-Np, as a melamine-binding agent. SEM, AFM, TEM, FTIR, MRS, and XRD were used to confirm the morphology, size, and nature of ZnO-Np, citrate-coated ZnO-Np (ZnO-W/C), and ZnO-W/C conjugated with melamine. The zeta potential was − 43.5 mV, and the ZnO-W/C particle size ranged from 50 to 100 nm. Using MRS with a laser wavelength of 785 nm for a Raman shift ranging from 400 to 1200 cm−1, ZnO-W/C was utilized to detect melamine. ZnO-W/C conjugated with melamine showed a Raman shift at 677 cm−1. A linear regression model based on the Raman shift at different melamine concentrations was developed to quantify melamine in the spiked milk powder. With spiked infant milk powder, the lowest melamine detection level was 0.125 ppm. This is a sensitive and effective way to detect melamine in infant milk powder. This work suggests that ZnO-NPs, synthesized using fruit industry waste as a starting material, can serve as a diagnostic tool to ensure food safety.

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利用生物合成的氧化锌纳米颗粒通过微拉曼光谱检测婴儿奶粉中的三聚氰胺
以木瓜皮提取物为还原剂,绿色合成了氧化锌纳米粒子(ZnO-NPs),并将其用于开发一种新型微拉曼光谱法来检测婴儿奶粉中的三聚氰胺。柠檬酸盐被涂覆在生物合成的 ZnO-Np 上,作为三聚氰胺结合剂。利用扫描电子显微镜、原子力显微镜、电子显微镜、傅立叶变换红外光谱、磁共振扫描光谱和 X 射线衍射光谱确认了 ZnO-Np、柠檬酸盐涂层 ZnO-Np(ZnO-W/C)和与三聚氰胺共轭的 ZnO-W/C 的形态、尺寸和性质。ZnO-W/C 的 zeta 电位为 - 43.5 mV,粒径为 50 至 100 nm。使用波长为 785 nm 的激光进行拉曼光谱分析,拉曼位移范围为 400 至 1200 cm-1,ZnO-W/C 被用来检测三聚氰胺。与三聚氰胺共轭的 ZnO-W/C 在 677 cm-1 处显示出拉曼位移。根据不同三聚氰胺浓度下的拉曼位移建立了一个线性回归模型,用于定量检测添加了三聚氰胺的奶粉中的三聚氰胺含量。在添加了三聚氰胺的婴儿奶粉中,三聚氰胺的最低检测水平为0.125 ppm。这是检测婴儿奶粉中三聚氰胺的一种灵敏而有效的方法。这项工作表明,以水果业废料为起始材料合成的氧化锌-氮氧化物可作为一种诊断工具,确保食品安全。
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