Page 535 - Polymer-based Nanocomposites for Energy and Environmental Applications
P. 535

488                Polymer-based Nanocomposites for Energy and Environmental Applications

         [39] Huang Z-M, Zhang Y-Z, Kotaki M, Ramakrishna S. A review on polymer nanofibers by
             electrospinning and their applications in nanocomposites. Compos Sci Technol 2003;63
             (15):2223–53.
         [40] Chronakis IS. Novel nanocomposites and nanoceramics based on polymer nanofibers
             using electrospinning process—a review. J Mater Process Technol 2005;167:283–93.
         [41] Cepak VM, Hulteen JC, Che G, Jirage KB, Lakshmi BB, Fisher ER, et al. Chemical strat-
             egies for template syntheses of composite micro-and nanostructures. Chem Mater 1997;9
             (5):1065–7.
         [42] Prasanth R, Owuor PS, Shankar R, Joyner J, Kosolwattana S, Jose SP, et al. Eco-friendly
             polymer-layered silicate nanocomposites- preparation, chemistry, properties, and applica-
             tions. In: Thakur VK, Thakur MK, editors. Advanced structured materials. Ne Delhi:
             Springer; 2015. p. 1–42.
         [43] Morgan AB, Gilman JW. Characterization of polymer-layered silicate (clay)
             nanocomposites by transmission electron microscopy and X-ray diffraction: a compara-
             tive study. J Appl Polym Sci 2003;87(8):1329–38.
         [44] Zakharchenko E, Mokhodoeva O, Malikov D, Molochnikova N, Kulyako Y,
             Myasoedova G. Novel sorption materials for radionuclide recovery from nitric acid solu-
             tions: solid-phase extractants and polymer composites based on carbon nanotubes.
             Procedia Chem 2012;7:268–74.
         [45] Chen J, Hong X, Xie Q, Li D, Zhang Q. Sepiolite fiber oriented-polypyrrole nanofibers for
             efficient chromium(VI) removal from aqueous solution. J Chem Eng Data
             2014;59:2275–82.
         [46] Weidlich C, Mangold KM, J€ uttner K. Conducting polymers as ion-exchangers for water
             purification. Electrochim Acta 2001;47(5):741–5.
         [47] Olatunji MA, Khandaker MU, Amin YM, Mahmud HNME. Cadmium-109 radioisotope
             adsorption onto polypyrrole coated sawdust of Dryobalanops aromatic: kinetics and
             adsorption isotherms modelling. PLoS One 2016;11(10), e0164119.
         [48] Hasani T, Eisazadeh H. Removal of Cd(II) by using polypyrrole and its nanocomposites.
             Synth Met 2013;175:15–20.
         [49] Bhaumik M, Maity A, Srinivasu VV, Onyango MS. Enhanced removal of Cr(VI) from
             aqueous solution using polypyrrole/Fe 3 O 4 magnetic nanocomposite. J Hazard Mater
             2011;190:381–90.
         [50] Peng X, Zhang W, Gai L, Jiang H, Wang Y, Zhao L. Dedoped Fe 3 O 4 /PPy nanocomposite
             with high anti-interfering ability for effective separation of ag(I) from mixed metal-ion
             solution. Chem Eng J 2015;280:197–205.
         [51] Wang Y, Zou B, Gao T, Wu X, Lou S, Zhou S. Synthesis of orange-like Fe 3 O 4 /PPy com-
             posite microspheres and their excellent Cr(VI) ion removal properties. J Mater Chem
             2012;22:9034–40.
         [52] Seid L, Chouder D, Maouche N, Bakas I, Barka N. Removal of Cd(II) and Co(II) ions from
             aqueous solutions by polypyrrole particles: kinetics, equilibrium and thermodynamics.
             J Taiwan Inst Chem Eng 2014;45:2969–74.
         [53] Abdi S, Nasiri M, Mesbahi A, Khani MH. Investigation of uranium (VI) adsorption by
             polypyrrole. J Hazard Mater 2017;332:132–9.
         [54] Abdel Salam OE, Reiad NA, ElShafei MM. A study of the removal characteristics of
             heavy metals from wastewater by low-cost adsorbents. J Adv Res 2011;2:297–303.
         [55] Setshedi KZ, Bhaumik M, Songwane S, Onyango MS, Maity A. Exfoliated polypyrrole-
             organically modified montmorillonite clay nanocomposite as a potential adsorbent for
             Cr(VI) removal. Chem Eng J 2013;222:186–97.
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