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Plasmonic MoO2 nanospheres assembled on graphene oxide for highly sensitive SERS detection of organic pollutants

DOI:10.1007/s00216-019-01751-z 期刊:Analytical and Bioanalytical Chemistry 出版年份:2019 更新时间:2025-11-14 15:27:09
摘要: The molybdenum oxide and graphene oxide (MoO2/GO) nanocomposite has been fabricated via simple hydrothermal assisted synthesis using Mo and MoO3 as precursors. The MoO2 nanospheres with porous hollow structure are assembled onto GO nanosheets. Profiting from the plasmonic effects of MoO2 and synergistic effect of MoO2 and GO, this hybrid nanomaterial exhibits significantly enhanced surface enhanced Raman scattering (SERS) activity for organic pollutants. The detection limit for rhodamine 6G (R6G) is 1.0 × 10?9 M, and the maximum enhancement factor (EF) reaches up to 1.05 × 107, which is the best among the semiconductor-based SERS materials. For practical application, the MoO2/GO SERS substrates are also applied to detect Methylene blue (MB) in river water, and the detection limit (1.0 × 10?8 M) can be acquired. Pyrene is also chosen as probe molecule, and quantitative determination is achieved with detection limit of 1.0 × 10?7 M. These demonstrate the well feasibility for multi-molecule detection. Furthermore, the nanocomposite displays high stability, reproducible stability, and acid and alkali resistance.
作者: Jianli Chen,Kai Sun,Yi Zhang,Di Wu,Zhen Jin,Fazhi Xie,Xiaoli Zhao,Xiufang Wang
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Investigating the therapeutic effects of a specific herbal medicine on a particular disease.

In summary, we have constructed a credible and semiconductor-based SERS detection platform on the basis of the MoO2/GO nanocomposite. Profiting from the strong SPR of MoO2 and synergistic effect of MoO2 and GO, this hybrid nanomaterial exhibits significantly enhanced SERS activity for organic pollutants. Several highly concerned organic pollutants, such as R6G, MB, and pyrene can be accurately tested. The LOD reaches 1.0 × 109 M level, and the maximum EF is up to 1.05 × 107. Furthermore, the hybrid SERS substrate displays high stability and reproducibility. This research reveals a new road to construct semiconductor-based SERS substrate for highly sensitive detection of environment pollutions.

The EF of MoO2/GO-70 for R6G at 614 cm?1 is surveyed to be about 1.05 × 107, and it is fairly greater than the value of bare MoO2 (4.0 × 106). Despite the EF of MoO2/GO-70 is not outstanding relative to the noble metal nanostructures (such as Ag and Au), it is a real breakthrough among the semiconductor SERS substrates.

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