| Literature DB >> 32449120 |
Zi-Qiang Cheng1,2, Zhi-Wen Li3, Rui Yao3, Kuang-Wei Xiong3, Guang-Ling Cheng3, Yan-Hong Zhou3, Xin Luo4, Zhi-Min Liu5.
Abstract
Bimetallic nanomaterials, which exhibit a combination of the properties associated with two different metals, have enabled innovative applications in nanoscience and nanotechnology. Here, we introduce the fabrication of dendritic Au/Ag bimetallic nanostructures for surface-enhanced Raman scattering (SERS) and catalytic applications. The dendritic Au/Ag bimetallic nanostructures were prepared by combining the electrochemical deposition and replacement reaction. The formation of Au nanoparticle shell on the surface of Ag dendrites greatly improves the stability of dendritic nanostructures, followed by a significant SERS enhancement. In addition, these dendritic Au/Ag bimetallic nanostructures are extremely efficient in degrading 4-nitrophenol (4-NP) compared with the initial dendritic Ag nanostructures. These experimental results indicate the great potential of the dendritic Au/Ag bimetallic nanostructures for the development of excellent SERS substrate and highly efficient catalysts.Entities:
Keywords: Catalysis; Dendritic Au/Ag bimetallic nanostructures; Surface plasmon; Surface-enhanced Raman scattering
Year: 2020 PMID: 32449120 PMCID: PMC7246272 DOI: 10.1186/s11671-020-03347-4
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Fig. 1SEM images of the a dendritic Ag nanostructures and b–d dendritic Au/Ag bimetallic nanostructures prepared after different replacement reaction time: 30, 90, and 150 s, respectively. For simplicity, these samples were designated as bimetallic nanostructure (Ag180s-Au0s), (Ag180s-Au30s), (Ag180s-Au90s), and (Ag180s-Au150s), respectively. Inset is the corresponding high-magnification SEM image
Fig. 2EDX spectra of the dendritic Ag nanostructures (Ag180s-Au0s) and dendritic Au/Ag bimetallic nanostructures (Ag180s-Au30s)
Fig. 3Extinction spectra of the dendritic Ag nanostructures and dendritic Au/Ag bimetallic nanostructures. The spectra are stacked from bottom to top with the increase in replacement reaction time
Fig. 4a, b SERS spectra of 10−9 M 1,4-BDT adsorbed on dendritic Ag nanostructures and Au/Ag bimetallic nanostructures excited at 488 nm and 785 nm, respectively. c SERS spectra of 10−9 M 1,4-BDT detected at the freshly prepared and 90-day-old substrates, respectively. Curves are shifted vertically for clear presentation
Fig. 5a Time-dependent UV-vis absorption spectra of the reduction of 4-NP by NaBH4 in the presence of dendritic Au/Ag bimetallic nanostructures (Ag180s-Au90s). b Plots of -ln(A/A0) at λ = 400 nm as a function of reaction time in the presence of catalysts with the same area