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Preparation and properties of nanopolymer advanced composites: A review  73

           [57] Najafi A, Kord B, Abdi A, Ranaee S. The impact of the nature of nanoclay on physical and
               mechanical properties of polypropylene/reed flour nanocomposites. J Theor Comput
               Chem 2012;25:717–27. https://doi.org/10.1177/0892705711412813.
           [58] Rahman NA, Hassan A, Yahya R, Lafia-Araga RA. Glass fiber and nano-clay reinforced
               polypropylene composites: morphological, thermal and mechanical properties. Sains
               Malays 2013;42:537–46.
           [59] S. Manohar and K.B. Yusoh, Mechanical and physical properties of wood-plastic compos-
               ites made of 717 polypropylene, wood flour and nanoclay, In proceeding of Kuala Lumpur
               International Agriculture, Forestry and Plantation Conference-2015, ISBN: 978-967-
               11350-7-5, 1–10.
           [60] Basilia BA, Mendoza HD, Cada LG. Synthesis and characterization of RPET/organo-
               montmorillonite nanocomposites. Philipp J Eng 2011;23:19–34.
           [61] Giraldi ALFM, Bizarria M, Silva A, Velasco J, d’Avila MA, Mei L. Effects of extrusion
               conditions on the properties of recycled poly(ethylene terephthalate)/nanoclay
               nanocomposites prepared by a twin-screw extruder. J Appl Polym Sci 2008;108:2252–9.
           [62] Pegoretti A, Kolarik J, Peroni C, Migliaresi C. Recycled poly(ethylene terephthalate)/lay-
               ered silicate nanocomposites: morphology and tensile mechanical properties. Polymer
               2004;45:2751–9.
           [63] Bizarria M, Giraldi ALFM, de Carvalho CM, Velasco JI, d’Avila MA, Mei LHI. Morphol-
               ogy and thermomechanical properties of recycled PET-organoclay nanocomposites.
               J Appl Polym Sci 2007;104:1839–44.
           [64] Chang JH, Mun MK, Lee IC. Poly(ethylene terephthalate) nanocomposite fibers by in situ
               polymerization: the thermomechanical properties and morphology. J Appl Polym Sci
               2005;98:2009–16.
           [65] Haddad TS, Lichtenhan JD. Hybrid organic-inorganic thermoplastics: styryl-based poly-
               hedral oligomeric silsesquioxane polymers. Macromolecules 1996;29:7302–4.
           [66] Yoo Y, Kim S-S, Won JC, Choi K-Y, Lee JH. Enhancement of the thermal stability,
               mechanical properties and morphologies of recycled PVC/clay nanocomposites. Polym
               Bull 2004;52(373–380).
           [67] Jannapu Reddy R. Preparation, characterization and properties of injection molded
               graphene nanocomposites [MSc dissertation]. Wichita State University; 2010; Karabulut
               M. Production and characterization of nanocomposite materials from recycled thermo-
               plastics [MSc dissertation]. Middle East Technical University; 2003.
           [68] Martin L, Kortaberria G, Vazquez A, Fermeglia M, Martinelli L, Sinesi S, et al.
               A comparative study of nanocomposites based on a recycled poly (methyl methacrylate)
               matrix containing several nanoclays. Polym Compos 2008;29:782–90.
           [69] Andric ˇi  c B, Kovac ˇi  c T, Klari  c I. Properties of recycled material containing poly (vinyl
               chloride), polypropylene, and calcium carbonate nanofiller. Polym Eng Sci
               2008;48:572–7.
           [70] Kord B, Kiakojouri SMH. Effect of nanoclay dispersion on physical and mechanical prop-
               erties of wood flour/polypropylene/glass fibre hybrid composites. Bioresources
               2011;6:1741–51.
           [71] Nafchi HR, Abdouss M, Najafi SK, Gargari RM, Mazhar M. Effects of nano-clay particles
               and oxidized polypropylene polymers on improvement of the practical properties of wood-
               polypropylene composite. Adv Compos Mater 2015;24:239–48. https://doi.org/
               10.1080/09243046.2014.891341.
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