Page 44 - Polymer-based Nanocomposites for Energy and Environmental Applications
P. 44

Introduction of polymer-based nanocomposites                       23

            [86] Zhang RY, Olin H. Gold-carbon nanotube nanocomposites: synthesis and applications.
                Int J Biomed Nanosci Nanotechnol 2011;2(2):112–35.
            [87] O’Neal JT, Bolen MJ, Dai EY, Lutkenhaus JL. Hydrogen-bonded polymer
                nanocomposites containing discrete layers of gold nanoparticles. J Colloid Interface
                Sci 2017;485:260–8.
            [88] Burunkova J, Denisiuk I, Vorzobova N, Daroczi L, Hegedus CS, Charnovych S, et al.
                Fabrication and characterization of gold/acrylic polymer nanocomposites. Eur Polym
                J 2013;49(10):3072–7.
                                                      ˇ
            [89] Mikoli  unait_ e L, Kubili  ut_ e R, Popov A, Voronovic ˇ J, Sakirzanovas S, Ramanavic ˇien_ eA,
                et al. Development of gold nanoparticle-polypyrrole nanocomposites. Chem Aust
                2014;25(2):63–9.
            [90] Abdelrasoul GN, Farkas B, Romano I, Diaspro A, Beke S. Nanocomposite scaffold
                fabrication by incorporating gold nanoparticles into biodegradable polymer matrix:
                synthesis,  characterization,  and  photothermal  effect.  Mater  Sci  Eng  C
                2015;56:305–10.
            [91] Nandapure I, Kondawar SB, Nandapure AI. Magnetic properties of nanostructured cobalt
                and nickel oxide reinforced polyaniline composites. International conference on bench-
                marks in engineering science and technology (ICBEST); 2012.
            [92] Husain J, Sridhar BC, Ambika Prasad MVN. Synthesis, sensing and magnetic properties
                of polyaniline/nickel oxide nanocomposites. J Eng Technol 2014;7:620–6.
            [93] Murali KP, Sharma H, Raj PM, Mishra D, Goyal M, Silver K, et al. Structure-magnetic
                property correlations in nickel-polymer nanocomposites. J Mater Sci Mater Electron
                2016;27:154–62.
            [94] Goyala SL, Sharmaa S, Jaina D, Kumarb D, Kishore N. In situ synthesis and character-
                ization of polyaniline/nickel oxide composites. Adv Appl Sci Res 2015;6(1):89–98.
            [95] Sharma H, Jain S, Markondeya Raj P, Murali KP, Tummala R. Magnetic and dielectric
                property studies in Fe- and NiFe-based polymer nanocomposites. J Electron Mater
                2015;44(10):3819–26.
            [96] Mittal V. In-situ synthesis of polymer nanocomposites. Weinheim: Wiley-VCH Verlag
                GmbH & Co. KGaA; 2012.
            [97] Erceg M, Jozi’c D, Banova I, Perinovi’c S, Bernstorff S. Preparation and characterization
                of melt intercalated poly(ethylene oxide)/lithium montmorillonite nanocomposites M.
                Thermochim Acta 2014;579:86–92.
            [98] Shen Z, Simon GP, Cheng Y-B. Melt intercalation of PMMA into organically-modified
                layered silicate. Mater Res Soc Proc 1999;576:137.
            [99] Lu C, Mai Y-W. Permeability modelling of polymer-layered silicate nanocomposites.
                Compos Sci Technol 2007;67:2895–902.
           [100] Hooshmand Zaferani S, Danaee I. Investigating the effect of organosilane and cerium
                nitrate on high-performance epoxy-based coatings for carbon steel. Germany: LAP
                LAMBERT Academic Publishing; 2013.
           [101] Hooshmand Zaferani S, Danaee I, Zaarei D, Mehrabian N. The effect of organosilane on
                corrosion resistance of epoxy coating containing cerium nitrate. J Adhes Sci Technol
                2014;28(2):151–60.
           [102] Hooshmand Zaferani S, Peikari M, Danaee I, Zaarei D, Fakhraei JM, Mohammadi M.
                Using silane films to produce an alternative for chromate conversion coatings.
                J Corros Sci Eng 2013;69(4):372–87.
           [103] Hooshmand Zaferani S, Peikari M, Danaee I, Zaarei D. Electrochemical effects of silane
                pretreatments and cerium nitrate on cathodic disbonding properties of epoxy coated steel.
                J Adhes Sci Technol 2013;27(22):2411–20.
   39   40   41   42   43   44   45   46   47   48   49