کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
---|---|---|---|---|
187596 | 459646 | 2013 | 7 صفحه PDF | دانلود رایگان |

Composite nanostructures based on few-layers graphene with encased gold or silver nanoparticles (denoted as Gr-Au and Gr-Ag, respectively) were separately prepared in a single-step synthesis by radio frequency catalytic chemical vapor deposition (RF-cCVD) over Aux/MgO and Agx/MgO catalytic system (where x = 3 wt.%), respectively. Their morphological properties were investigated by electron microscopy techniques (TEM/HRTEM), which demonstrated that the number of graphitic layers within the sheet varied between 2 and 7. Thorough TEM analysis also indicated that gold nanoparticles had a mean size of 22 nm, while silver nanoparticles were found to be larger with a mean size of 35 nm. X-ray powder diffraction proved that the crystallinity of the Gr-Au or Gr-Ag samples is less influenced by the type of metallic nanoparticles (silver or gold) encased between the graphitic layers. The mean value of the crystalline domain perpendicular to graphene (0 0 2) crystallographic plane was determined to be approximately 2.25 nm (for Gr-Au sample) and 2.14 nm (for Gr-Ag sample), both corresponding to 6 graphitic layers. Gr-Ag and Gr-Au nanostructures were used to modify platinum substrates and subsequently employed for the electrochemical analysis of carbamazepine. A significant decrease in the electrochemical oxidation potential of carbamazepine (150 mV) was obtained with both modified electrodes. The detection limit (DL) was found to be 2.75 × 10−5 M and 2.92 × 10−5 M for the Pt/Gr-Ag and Pt/Gr-Au electrode, respectively.
Figure optionsDownload as PowerPoint slideHighlights
► Graphene sheets with embedded gold or silver nanoparticles were prepared by RF-cCVD method.
► The crystallinity of the composite samples is less influenced by the type of metallic nanoparticles (silver or gold).
► The composite nanostructures exhibit excellent electro-catalytic properties toward carbamazepine oxidation.
Journal: Electrochimica Acta - Volume 89, 1 February 2013, Pages 246–252