Institute of Intelligent Machines, Chinese Academy of Sciences, Hefei, Anhui 230031, China.
Anal Chem. 2012 Jan 3;84(1):255-61. doi: 10.1021/ac202452t. Epub 2011 Dec 15.
Here, we report the shell thickness-dependent Raman enhancement of silver-coated gold nanoparticles (Au@Ag NPs) for the identification and detection of pesticide residues at various fruit peels. The Raman enhancement of Au@Ag NPs to a large family of sulfur-containing pesticides is ~2 orders of magnitude stronger than those of bare Au and Ag NPs, and there is a strong dependence of the Raman enhancement on the Ag shell thickness. It has been shown for the first time that the huge Raman enhancement is contributed by individual Au@Ag NPs rather than aggregated Au@Ag NPs with "hot spots" among the neighboring NPs. Therefore, the Au@Ag NPs with excellent individual-particle enhancement can be exploited as stand-alone-particle Raman amplifiers for the surface identification and detection of pesticide residues at various peels of fruits, such as apple, grape, mango, pear, and peach. By casting the particle sensors onto fruit peels, several types of pesticide residues (e.g., thiocarbamate and organophosphorous compounds) have been reliably/rapidly detected, for example, 1.5 nanograms of thiram per square centimeter at apple peel under the current unoptimized condition. The surface-lifting spectroscopic technique offers great practical potentials for the on-site assessment and identification of pesticide residues in agricultural products.
在这里,我们报告了银壳厚度依赖性的金纳米粒子(Au@Ag NPs)的 Raman 增强,用于识别和检测各种果皮上的农药残留。Au@Ag NPs 对一大类含硫农药的 Raman 增强比裸 Au 和 Ag NPs 强约 2 个数量级,并且 Raman 增强强烈依赖于 Ag 壳厚度。首次表明,巨大的 Raman 增强是由单个 Au@Ag NPs 贡献的,而不是由相邻 NPs 之间的“热点”聚集的 Au@Ag NPs 贡献的。因此,具有优异的单颗粒增强效果的 Au@Ag NPs 可以被用作独立颗粒 Raman 放大器,用于识别和检测各种果皮上的农药残留,如苹果、葡萄、芒果、梨和桃。通过将颗粒传感器涂覆在果皮上,可以可靠/快速地检测到几种类型的农药残留(例如,苹果皮上每平方厘米 1.5 纳克的代森锰锌),在当前未优化的条件下。表面提升光谱技术为农产品中农药残留的现场评估和识别提供了巨大的实际潜力。