| Literature DB >> 21711871 |
Cuifeng Zhou1, Zongwen Liu, Yushan Yan, Xusheng Du, Yiu-Wing Mai, Simon Ringer.
Abstract
Poly(3,4-ethylenedioxythiophene) (PEDOT) films doped with nitric and chlorine ions have been electrochemically deposited simply by a one-step electrochemical method in an aqueous media in the absence of any surfactant. The fabricated PEDOT films were characterized by scanning electron microscopy, transmission electron microscopy, and Raman spectroscopy. The results indicate that the hierarchical structured PEDOT film doped with nitric ions displays a 'lunar craters' porous morphology consisting of PEDOT nano-sheets with a thickness of less than 2 nm. The effect of counter ions on the electro-polymerization, the electrochemistry, and the morphology of the polymer film was studied. Compared with PEDOT film doped with nitric acid, PEDOT film deposited in the presence of chlorine ions shows irregular morphology and less electrochemical activity. The specific nanostructure of the polymer was further studied as catalyst support for platinum nanoparticles to methanol electro-oxidation.Entities:
Year: 2011 PMID: 21711871 PMCID: PMC3211454 DOI: 10.1186/1556-276X-6-364
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1Cyclic voltammograms of Pt in 0.01 M EDOT + 0.1 M KNOand 0.01 M EDOT + 0.1 M KCl. Scan rate: 50 mV/s.
Figure 2Chronocoulemetry of PEDOT deposition on Pt in 0.01 M EDOT + 0.1 M KNOand 0.01 M EDOT + 0.1 M KCl.
Figure 3Cyclic voltammograms in the phosphate buffer solution. Scan rate: 50 mV/s. (a)PEDOT-NO3 and (b)PEDOT-Cl.
Figure 4Raman spectrum of PEDOT-NOfilm.
Figure 5SEM and TEM images of the PEDOT-NOfilm. (a, b)up-surface; (c) the cross section and (d) the back-surface; (e) TEM image; (f) SEM images of PEDOT-Cl film.
Figure 6Images of the Pt-PEDOT composites. (a)SEM and (b)TEM.
Figure 7Cyclic voltammograms of (a) Pt-PEDOT/GC and (c) Pt disk electrode in 1 M CHOH + 0.5 M HSO, and (b) Pt-PEDOT/GC in 0.5 M HSO. Scan rate: 100 mV/s.