Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8026258 | Surface and Coatings Technology | 2015 | 29 Pages |
Abstract
Graphene oxide (GO) obtained by electrochemical exfoliation method was used to prepare a composite with the inorganic polymer, 3-n-propylpyridinium silsesquioxane chloride polymer, SiPy+. This composite (SiPy+(GO)) was applied as polyelectrolyte to form LbL films with nickel tetrasulfophthalocyanine (NiTsPc4 â) as polyanion. The absorbance of the NiTsPc4 â Q bands linearly increased with the number of deposited bilayers (SiPy+(GO)/NiTsPc4 â)n LbL films. From the graphics of absorbance as a function of the number of bilayers, it was possible to observe that the amount of NiTsPc4 â deposited on the FTO substrate is higher to the SiPy+(GO)/NiTsPc4 â than SiPy+/NiTsPc4 â films, as a consequence of the effective Ï-Ï interaction between the graphene and phthalocyanine molecules. The Raman spectra of the film with graphene oxide, SiPy+(GO)/NiTsPc4 â showed the GO “D” bands at 1339 cmâ 1, and the “G” bands at 1556 cmâ 1. The presence of GO in the SiPy+(GO)/NiTsPc4 â film was confirmed by the presence of “2D” band at 2686 cmâ 1, which is not observed in the SiPy+/NiTsPc4 â film. Cyclic voltammetric and EIS studies showed that the presence of graphene oxide nanoparticles in the film configuration considerably increased its conductivity when compared to the film without GO (SiPy+/NiTsPc4 â) which favors its application for the development of electrochemical sensors.
Related Topics
Physical Sciences and Engineering
Materials Science
Nanotechnology
Authors
R.B. Estevam, R.T. Ferreira, A.B.-H. Bischof, F.S. dos Santos, C.S. Santos, S.T. Fujiwara, K. Wohnrath, S.R. Lazaro, J.R. Garcia, C.A. Pessoa,