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A facile route of polythiophene nanoparticles via Fe3+‐catalyzed oxidative polymerization in aqueous medium
Authors:Sun Jong Lee  Jung Min Lee  In Woo Cheong  Hoosung Lee  Jung Hyun Kim
Institution:1. Nanosphere Process and Technology Laboratory, Department of Chemical Engineering, Yonsei University, 134 Shinchon‐Dong, Seodaemoon‐Gu, Seoul 120‐749, Republic of Korea;2. Department of Applied Chemistry, Kyungpook National University, 1370 Sankyuk‐dong, Buk‐gu, Daegu 702‐701, Republic of Korea;3. Department of Chemistry, Sogang University, 1‐1 Shinsoo‐Dong, Mapo‐Gu, Seoul 121‐742, Republic of Korea
Abstract:We have demonstrated that unsubstituted thiophene can be polymerized by Fe3+‐catalyzed oxidative polymerization inside nanosized thiophene monomer droplets, that is, nanoreactors, dispersed in aqueous medium, which can be performed under acidic solution conditions with anionic surfactant. Besides, we proposed a synthetic mechanism for the formation of the unsubstituted polythiophene nanoparticles in aqueous medium. This facile method includes a FeCl3/H2O2 (catalyst/oxidant) combination system, which guarantees a high conversion (ca. 99%) of thiophene monomers with only a trace of FeCl3. The average particle size was about 30 nm, within a narrow particle‐size distribution (PDI = 1.15), which resulted in a good dispersion state of the unsubstituted polythiophene nanoparticles. Hansen solubility parameters were introduced to interpret the dispersion state of the polythiophene nanoparticles with various organic solvents. The UV–Visible absorption and photoluminescence (PL) spectrum were measured to investigate the light emitting properties of the prepared unsubstituted polythiophene nanoparticle emulsions. According to non‐normalized PL analysis, the reduced total PL intensity of the polythiophene nanoparticle emulsions can be rationalized by self‐absorption in a wavelength range less than 500 nm. © 2008 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 46: 2097–2107, 2008
Keywords:conjugated polymers  dispersion  Fe3+‐catalyzed oxidative polymerization  nanoparticles  nanoreactor  polythiophene
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