| Literature DB >> 21888639 |
Viswanathan S Saji1, Yimhyun Jo, Hoi Ri Moon, Yongseok Jun, Hyun-Kon Song.
Abstract
There are many practical difficulties in direct adsorption of polymers onto nanocrystalline inorganic oxide surface such as Al2O3 and TiO2 mainly due to the insolubility of polymers in solvents or polymer agglomeration during adsorption process. As an alternative approach to the direct polymer adsorption, we propose surface-bound polymerization of pre-adsorbed monomers. 6-(3-Thienyl)hexanoic acid (THA) was used as a monomer for poly[3-(5-carboxypentyl)thiophene-2,5-diyl] (PTHA). PTHA-coated nanocrystalline TiO2/FTO glass electrodes were prepared by immersing THA-adsorbed electrodes in FeCl3 oxidant solution. Characterization by ultraviolet/visible/infrared spectroscopy and thermal analysis showed that the monolayer of regiorandom-structured PTHA was successfully formed from intermolecular bonding between neighbored THA surface-bound to TiO2. The anchoring functional groups (-COOH) of the surface-crawling PTHA were completely utilized for strong bonding to the surface of TiO2.Entities:
Year: 2011 PMID: 21888639 PMCID: PMC3212060 DOI: 10.1186/1556-276X-6-521
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1Surface-bound polymerization of THA to PTHA on surface of a TiO. The monomer THA was strong bonded to TiO2 surface via -COOH. FeCl3 was used as an oxidizing agent to polymerize the surface-bound THA to its corresponding polymer PTHA.
Figure 2UV-vis spectra of PTHA-coated TiO. (a, b, c) PTHA prepared by surface-bound polymerization with various oxidizing conditions: dipping in FeCl3 (a) at room temperature for 24 h, (b) at 80°C for 10 h and (c) at 80°C for 24 h. (d) PTHA prepared via direct polymer adsorption by dipping TiO2 electrodes in PTHA solution at 80°C for 24 h. (Inset) Photograph of PTHA-coated TiO2 electrodes.
Figure 3FTIR spectra and thermograms of PTHA-coated TiO. (a) FTIR spectra and (b) thermograms of PTHA-coated TiO2 electrodes for surface-bound polymerization versus direct polymer adsorption. An inert atmosphere was kept at 20°C min-1 for TGA.