Ge Biaobiao, Huang Jie, Qin Haojia, Zhao Shuai, Yang Feng, Wang Mengmeng, Liang Pei
College of Optical and Electronic Technology, China Jiliang University, Hangzhou, 310018, China.
Mikrochim Acta. 2024 May 7;191(6):308. doi: 10.1007/s00604-024-06384-3.
A convenient self-assembly method is proposed for synthesis of 3D Au/MOF-808 (Zr) composite nanostructures with a cerium metal-organic framework loaded with gold nanoparticles. We combine adsorption properties of MOF materials with surface plasmon resonance of noble metals to construct hotspot-dense 3D Au/MOF-808 (Zr) SERS substrates, by using a two-step method of solvothermal and reduction reactions. The results show that optimal SERS substrates are obtained from a volume ratio of gold nanoparticles to MOF-808 (Zr) solution of 4:1 and a self-assembly time of 2 h. Rhodamine 6G (R6G) is used as a molecular probe to characterize and analyze SERS properties of substrates of 3D Au/MOF-808 (Zr) prepared under the optimal process conditions, where the substrates are capable to detect R6G concentrations down to 10 M with a relative standard deviation of 8.81%. Finally, we applied the SERS substrates of 3D Au/MOF-808 (Zr) to the detection of pesticide thiram, and establish a quantitative determination method. 3D Au/MOF-808 (Zr) provides a sensitive detection of thiram in lake water by SERS with a detection limit of 1.49 × 10 M. Application tests show that a SERS enhancement factor of the MOF-based SERS substrates for the detection of thiram can be significantly increased to 5.91 × 10. Thus, the above results indicate that such substrate has high sensitivity, good adsorption, homogeneity, and reproducibility, which can be extended for sensitive detection of pesticide residues in food and environment.
本文提出了一种简便的自组装方法,用于合成负载金纳米颗粒的铈基金属有机框架3D Au/MOF-808(Zr)复合纳米结构。我们将MOF材料的吸附特性与贵金属的表面等离子体共振相结合,采用溶剂热和还原反应两步法构建热点密集的3D Au/MOF-808(Zr)表面增强拉曼散射(SERS)基底。结果表明,当金纳米颗粒与MOF-808(Zr)溶液的体积比为4:1且自组装时间为2 h时,可获得最佳的SERS基底。以罗丹明6G(R6G)作为分子探针,对在最佳工艺条件下制备的3D Au/MOF-808(Zr)基底的SERS性能进行表征和分析,该基底能够检测低至10 M的R6G浓度,相对标准偏差为8.81%。最后,将3D Au/MOF-808(Zr) SERS基底应用于农药福美双的检测,并建立了定量测定方法。3D Au/MOF-808(Zr)通过SERS对湖水中的福美双进行了灵敏检测,检测限为1.49×10 M。应用测试表明,基于MOF的SERS基底对福美双检测的SERS增强因子可显著提高到5.91×10。因此,上述结果表明该基底具有高灵敏度、良好的吸附性、均匀性和重现性,可扩展用于食品和环境中农药残留的灵敏检测。