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Abstract

Graphene functionalized with polyamidoamine dendrimer, decorated with silver nanoparticles (G-D-Ag), was synthesized and evaluated as a substrate with surface-enhanced Raman scattering (SERS) for methimazole (MTZ) detection. Sodium borohydride was used as a reducing agent to cultivate silver nanoparticles on the dendrimer. The obtained G-D-Ag was characterized by using UV-vis spectroscopy, scanning electron microscope (SEM), high-resolution transmission electron microscope (TEM), Fourier-transformed infrared (FT-IR) and Raman spectroscopy. The SEM image indicated the successful formation of the G-D-Ag. The behavior of MTZ on the G-D-Ag as a reliable and robust substrate was investigated by SERS, which indicated mostly a chemical interaction between G-D-Ag and MTZ. The bands of the MTZ normal spectra at 1538, 1463, 1342, 1278, 1156, 1092, 1016, 600, 525 and 410 cm⁻¹ were enhanced due to the SERS effect. Correlations between the logarithmical scale of MTZ concentrations and SERS signal intensities were established, and a low detection limit of 1.43 × 10⁻¹² M was successfully obtained. The density functional theory (DFT) approach was utilized to provide reliable assignment of the key Raman bands.

Keywords

Silver nanoparticleDendrimerRaman scatteringRaman spectroscopySodium borohydrideMaterials scienceScanning electron microscopeDetection limitSubstrate (aquarium)GrapheneAnalytical Chemistry (journal)Surface-enhanced Raman spectroscopyNanoparticleTransmission electron microscopyNuclear chemistryNanotechnologyChemistryOrganic chemistryOpticsChromatographyPolymer chemistry

Identifiers

Journal
Scientific Reports
Year
2016