Page 534 - Polymer-based Nanocomposites for Energy and Environmental Applications
P. 534

Polypyrrole-based nanocomposite adsorbents                        487

           [19] Chen X, Issi JP, Devaux J, Billaud D. Chemically oxidized polypyrrole: influence of the
               experimental conditions on its electrical conductivity and morphology. Polym Eng Sci
               1995;35(8):642–7.
           [20] Walker JA, Warren L, Witucki E. New chemically prepared conducting “pyrrole blacks”.
               J Polym Sci A Polym Chem 1988;26(5):1285–94.
           [21] Rapi S, Bocchi V, Gardini GP. Conducting polypyrrole by chemical synthesis in water.
               Synth Met 1988;24(3):217–21.
           [22] Dhawan S, Trivedi D. Thin conducting polypyrrole film on insulating surface and its appli-
               cations. Bull Mater Sci 1993;16(5):371–80.
           [23] Gardini G. The oxidation of monocyclic pyrroles. Adv Heterocycl Chem 1973;15:67–98.
           [24] Shimidzu T, Ohtani A, Honda K. Charge-controllable poly pyrrole/poly electrolyte com-
               posite membranes: part III. Electrochemical deionization system constructed by anion-
               exchangeable and cation-exchangeable polypyrrole electrodes. J Electroanal Chem Inter-
               facial Electrochem 1988;251(2):323–37.
           [25] Sotzing GA, Reynolds JR, Katritzky AR, Soloducho J, Belyakov S, Musgrave R. Poly [bis
               (pyrrol-2-yl) arylenes]: conducting polymers from low oxidation potential monomers
               based on pyrrole via electropolymerization. Macromolecules 1996;29(5):1679–84.
           [26] Kuwabata S, Okamoto K, Yoneyama H. Conductivity of polypyrrole films doped with aro-
               matic sulphonate derivatives. J Chem Soc, Faraday Trans 1 1988;84(7):2317–26.
           [27] Kim D, Lee J, Kim C, Kang E, Tan K. Protonation and doping behavior of polypyrrole
               films and powders. Synth Met 1995;69(1):501–2.
           [28] Genies E, Bidan G, Diaz A. Spectroelectrochemical study of polypyrrole films.
               J Electroanal Chem Interfacial Electrochem 1983;149(1):101–13.
           [29] Diaz A, Kanazawa KK, Gardini GP. Electrochemical polymerization of pyrrole. J Chem
               Soc Chem Commun 1979;(14):635–6.
           [30] Singh K, Ohlan A, Dhawan S. Polymer-graphene nanocomposites: preparation,
               characterization, properties, and applications. INTECH Open Access Publisher; 2012.
               p. 37–71.
           [31] Mittal V. Overview of polymer nanotube nanocomposites. In: Mittal V, editor. Polymer
               nanotube nanocomposites: synthesis, properties and applications. Salem: Scrivener Pub-
               lishing; 2010. p. 2–23.
           [32] Mittal V. In-situ synthesis of polymer nanocomposites. In: Mittal V, editor. In-situ syn-
               thesis of polymer nanocomposites. Weinheim: Wiley-VCH Verlag GmbH & Co. KGaA;
               2012. p. 1–24.
           [33] Gurunathan T, Rao CR, Narayan R, Raju K. Polyurethane conductive blends and compos-
               ites: synthesis and applications perspective. J Mater Sci 2013;48(1):67–80.
           [34] Wang J, Xu Y, Chen X, Sun X. Capacitance properties of single wall carbon nanotube/
               polypyrrole composite films. Compos Sci Technol 2007;67(14):2981–5.
           [35] Garzo ´n C, Palza H. Electrical behavior of polypropylene composites melt mix with
               carbon-based particles: effect of the kind of particle and annealing process. Compos
               Sci Technol 2014;99:117–23.
           [36] Zhao X, Lv L, Pan B, Zhang W, Zhang S, Zhang Q. Polymer-supported nanocomposites
               for environmental application: a review. Chem Eng J 2011;170:381–94.
           [37] Tanahashi M. Development of fabrication methods of filler/polymer nanocomposites:
               with focus on simple melt-compounding-based approach without surface modification
               of nanofillers. Materials 2010;3:1593–619.
           [38] Liu Y, Wang A, Claus R. Molecular self-assembly of TiO 2 /polymer nanocomposite films.
               J Phys Chem B 1997;101(8):13858–88.
   529   530   531   532   533   534   535   536   537   538   539