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Articles

Study on a Microreaction Process for Synthesis of Polyaniline

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References

  • Abid, M. 2015. Desulfurization of gas oil using a solar photocatalytic microreactor, Energy Procedia 74, 663–78 10.1016/j.egypro.2015.07.802
  • Adams, P. N., P. J. Laughlin, and A. P. Monkman. 1996. Synthesis of high molecular weight polyaniline at low temperatures, Synthetic Metals 76, 157–60
  • Al-Raie, H. 2005. Desulfurization of Thiophene and Dibenzothiophene with Hydrogen Peroxide in a Photochemical Microreactor, MSc thesis, Oregon State University.
  • Benabdellah, A., H. Ilikti, H. Belarbi, B. Fettouhi, A. Ait Amer, and M. Hatti. 2011. Effects of the synthesis temperature on electrical properties of polyaniline and their electrochemical characteristics onto silver cavity microelectrode Ag/C-EM, International Journal of Electrochem Sciences. 6, 1747–59
  • Blinova, N., J. Stejskal, M. Trchova, I. Sapurina, and G. Ciric-Marjanovic. 2009. The oxidation of aniline with silver nitrate to polyaniline/silver composites, Polymer, 2009; 50: 50–56.
  • Branebjerg, J., P. Gravesen, J. P. Krog, and C. R. Nielsen, Proc IEEE MEMS ‘96, San Diego, USA (1996)
  • Campos, T.L.A., Kersting, D.F., Ferreira, C.A. 1999. Chemical synthesis of polyaniline using sulphanilic acid as dopant agent into the reactional medium, Surface and Coatings Technology. 122, 3–5.
  • Das, I., S. K. Gupta, and R. S. Lall, Light induced electropolymerization of aniline, Indian Journal of Chemical Technology, 12(2005), pp. 198–204.
  • de Barros, R. A., W. M. de Azevedo, and F. M. de Aguiar. 2003. Photo-induced polymerization of polyaniline, Materials Characterization 50, 131–34
  • Emeline, A. V., V. Ryabchuk, and N. Serpone. 2000. Factors affecting the efficiency of a photocatalysed process in aqueous metal-oxide dispersions, prospect of distinguishing between two kinetic models, Journal of Photochemistry and Photobiology A: Chemistry 133, 89–97
  • Faris, Y. 2007, Polyaniline: Synthesis, Characterization, Solution properties and Composites, MSc thesis, Middle-East Technical University, Turkey.
  • Gordana, D. N., B. J. Katarina, and M. J. Slobodan. 2006. Kinetics of aniline polymerization initiated with iron (III) chloride, Journal Serb Chemical Social. 71(8–9) 895–904.
  • Gustavo, M. M., T. Jimena, C. M. María, and B. César. 2010. Photolithography of Polyaniline on Solid Substrates Using Photoassisted Polymerization of Aniline, Molecular Crystals and Liquid Crystals, 522(1):389–396, Special Issue: Proceedings of the Xth International Conference on Frontiers of Polymers and Advanced Materials: Emerging Technologies and Business Opportunities
  • ISERC (Iraqi Solar Energy Research Center). 2012. Annual Report of the Iraqi Solar Energy Research Center (2011-2012), Ministry of Sciences and Technology, Baghdad
  • Kobayashi, N., T. Kenjiro, and H. Ryo. 1998. Conducting polymer image formation with photoinduced electron transfer reaction, Journal Materials Chemical. 8(3), 497–506
  • Kulkarni, A. P., S. H. Sonawane, P. L. Surywanshi, and B. A. Bhanvase. 2015. Continuous production of polyaniline nanoparticles using spiral microreactor, Austin Journal of Chemical Engineering. 2(1), 1–5
  • Kusakabe, K., K. Tokunaga, G. Zhao, K. I. Sotowa, and S. Morooka. 2002. Fabrication of parallel reactors for use in catalyst testing, Journal of Chemical Engineering Japan 35(9), 915–17
  • Langer, J. J., G. Framski, and R. Joachimiak. 2001. Polyaniline micro- and nanofibrils, Synthetic Metals 121(1–3), 1319–20.
  • Malinauskas, A. 2004. Self-doped polyanilines, Journal of Power Sources 126(1–2), 214–20
  • Mattoso, L. H. C., A. G. MacDiarmid, and A. J. Epstein. 1994., Controlled synthesis of high molecular weight polyaniline and poly (o-methoxyaniline), Synthetic Metals 68, 1–11.
  • Natalia, V. B., J. Stejskal, T. Miroslava, P. Jan, and O. Maria. 2007. Polyaniline and polypyrrole: A comparative study of the preparation, European Polymer Journal 43, 2331–41
  • Rebrov, E. V., S. A. Duinkerke, M. H. J. M. de Croon, and J. C. Schouten. 2003. Optimization of heat transfer characteristics, flow distribution, and reaction processing for a microstructured reactor/heat-exchanger for optimal performance in platinum catalyzed ammonia oxidation. Chemical Engineering. 93: 201–16
  • Rodolfo, C.-S., J. Romero-Garcı´a, J. L. Angulo-Sa´nchez, A. Ledezma-Pe´rez, E. Arias-Marı´n, I. Moggio, and E. Flores-Loyola. 2005. Template-free enzymatic synthesis of electrically conducting polyaniline using soybean peroxidase, European Polymer Journal 41,1129–1135.
  • Rossi, D., M. Angelepoulos, W. G. Zheng, and A. G. Diarmid. 1997. Synthetic Metals 84, p.35
  • Šalić, A., A. Tušek, and B. Zelić 2012. Review: Application of microreactors in medicine and biomedicine, Journal of Applied Biomedicine. 10: 137–53.
  • Sapurina, I., and J. Stejskal. 2010. The effect of pH on the oxidative polymerization of aniline and the morphology and properties of products, Russian Chemical Reviews 79 (12): 1123–43
  • Sonkawade, R. G., V. Kumar, L. Kumar, S. Annapoorni, S. G. Vaijapurkar, and A. S. Dhaliwal. 2010. Effects of gamma ray and neutron radiation on polyaniline conducting polymer, Indian Journal of Pure & Applied Physics 48, 453–56
  • Stejskal, J. 2002. Polyaniline: Preperation of conducting polymer, Pure Applications Chemical. 74: 857–67.
  • Turchi, C. S., and D. F. Ollis. 1990. Photocatalytic degradation of organic water contaminants: Mechanisms involving hydroxyl radical attack, Journal Catal.122, 178–92
  • Wang, X., H. Hirano, G. Xie, and X. Ding. 2013. VOF Modeling and analysis of the segmented flow in Y-shaped microchannels for microreactor systems, Advanced in High Energy Physics, Vol. 1-6, Article ID 732682, 6 pages, http://dx.doi.org/10.1155/2013/732682
  • Wegeng, R. W., C. J. Call, and M. K. Drost. Proc. 1996. Spring National Meeting, AIChE, Feb. 25–29 New Orleans, pp. 1–13.
  • Yong, K. S., and K. Sangmo. 2010. A review on mixing in microfluidics, Micromachines 1, 82–111.
  • Yu, S., C. Jian-Ding, Z. De-Qin, C. Carrot, and J. Guillet. 2004. Synthesis of conductive PANI via oxidation by manganese dioxide (MnO2), Chinese Journal of Polymer Science 22(3), 269–77

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