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Research Article

Hybrid polyvinyl alcohol/polyvinyl chloride nanocomposites reinforced with graphene-carbon nanotube for acid red environmental treatments

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Pages 1447-1462 | Received 20 Nov 2019, Accepted 14 Mar 2020, Published online: 09 Apr 2020

References

  • Paul, D. R.; Robenson, L. M. S. Polymer Nanotechnology: Nanocomposites. Polmer. 2008, 49, 3187–3204. DOI: 10.1016/j.polymer.2008.04.017.
  • Ghaffari-Moghaddam, M.; Eslahi, H. Synthesis, Characterization and Antibacterial Properties of a Novel Nanocomposite Based on Polyaniline/polyvinyl alcohol/Ag. Arabian J. Chem. 2014, 7, 846–855. DOI: 10.1016/j.arabjc.2013.11.011.
  • Cao, Y.-C.; Wang, X.; Mamlouk, M.; Scott, K. Preparation of Alkaline Anion Exchange Polymer Membrane from Methylated Melamine Grafted Poly (Vinylbenzyl Chloride) and Its Fuel Cell Performance. J. Mater. Chem. 2011, 21(34), 12910–12916.
  • Wang, M.; Li, Y.; Wu, J.; Xu, F.; Zuo, Y.; Jansen, J. A. In Vitro and in Vivo Study to the Biocompatibility and Biodegradation of Hydroxyapatite/poly (Vinyl Alcohol)/gelatin Composite. J. Biomed. Mater. Res. A. 2008, 85, 418–426. DOI: 10.1002/()1552-4965.
  • Alateyah, A.; Dhakal, H. N.; Zhang, Z. Y.; Aldousiri, B. Low Velocity Impact and Creep-strain Behaviour of Vinyl Ester Matrix Nanocomposites Based on Layered Silicate. Int. J. Polym. Sci. 2014, 541096, 1–10. DOI: 10.1155/2014/541096.
  • Zhang, X. Nanocomposites with Liquid-like Multiwalled Carbon Nanotubes Dispersed in Epoxy Resin without Solvent Process. Int. J. Polym. Sci. 2014, 2014, 712637, 1–6.
  • Costa-Júnior, E. S.; Barbosa-Stancioli, E. F.; Mansur, A. A. P.; Vasconcelos, W. L.; Mansur, H. S. Preparation and Characterization of Chitosan/poly (Vinyl Alcohol) Chemically Crosslinked Blends for Biomedical Applications. Carbohydr. Polym. 2009, 76(3), 472–481.
  • Wang, X.; Yucel, T.; Lu, Q.; Hu, X.; Kaplan, D. L. Silk Nanospheres and Microspheres from Silk/pva Blend Films for Drug Delivery. Biomaterials. 2010, 31(6), 1025–1035.
  • Zhou, Y.; Yang, D.; Chen, X.; Xu, Q.; Lu, F.; Nie, J. Electrospun Water-soluble Carboxyethyl Chitosan/poly (Vinyl Alcohol) Nanofibrous Membrane as Potential Wound Dressing for Skin Regeneration. Biomacromolecules. 2007, 9, 349–354. DOI: 10.1021/bm7009015.
  • Zou, G. X.; Qu, J. P.; Zou, X. L. Optimization of Water Absorption of starch/PVA Composites. Polym. Compos. 2007, 28, 674–679. DOI: 10.1002/pc.20333.
  • Abdelkader, K.; Anwar, Z. Spectroscopic Studies of Poly Vinyl Alcohol. J. Appl. Polym. Sci. 2006, 2, 1146–1151.
  • Boruah, M.; Mili, M.; Sharma, S.; Gogoi, B.; Kumar Dolui, S. Synthesis and Evaluation of Swelling Kinetics of Electric Field Responsive Poly (Vinyl Alcohol)‐g‐polyacrylic acid/OMNT Nanocomposite Hydrogels. Polym. Compos. 2015, 36, 34–41. DOI: 10.1002/pc.v36.1.
  • Takala, M.; Ranta, H.; Nevalainen, P.; Pakonen, P.; Pelto, J.; Karttunen, M.; Virtanen, S.; Koivu, V.; Pettersson, M.; Sonerud, B. Dielectric Properties and Partial Discharge Endurance of Polypropylene-silica Nanocomposite. IEEE Trans. Dielectr. Electr. Insul. 2010, 17(4), 1259–1267.
  • Mobarak, Y.; Bassyouni, M.; Almutawa, M. Materials Selection, Synthesis, and Dielectrical Properties of PVC Nanocomposites. Adv. Mater. Sci. Eng. 2013, 2013, 149672, 1–6. DOI: 10.1155/2013/149672.
  • Thabet, A.; Mobarak, Y. A Model for Dielectric Characterization of Nanocomposite Polymeric Industrial Materials. J. Eng. Sci.. 2012, 40, 1375–1388.
  • Iijima, S.;. Helical Microtubules of Graphitic Carbon. Nature. 1991, 354, 56–58. DOI: 10.1038/354056a0.
  • Ansari, M. O.; Yadav, S. K.; Cho, J. W.; Mohammad, F. Thermal Stability in Terms of DC Electrical Conductivity Retention and the Efficacy of Mixing Technique in the Preparation of Nanocomposites of Graphene/polyaniline over the Carbon Nanotubes/polyaniline. Compos. B Eng. 2013, 47, 155–161. DOI: 10.1016/j.compositesb.2012.10.042.
  • Wang, L.; Wu, Y.; Chen, F.; Yang, X. Photocatalytic Enhancement of Mg-doped ZnO Nanocrystals Hybridized with Reduced Graphene Oxide Sheets. Prog. Nat. Sci. 2014, 24(1), 6–12.
  • Cai, Y.-M.; Qin, Z.-Y.; Long, C. Effect of Electrolytes on Electrochemical Properties of Graphene Sheet Covered with Polypyrrole Thin Layer. Prog. Nat. Sci. 2011, 21, 460–466. DOI: 10.1016/S1002-0071(12)60083-5.
  • Lijima, S.; Ichihashi, T. Single-shell Carbon Nanotubes of 1-nm Diameter. Nature. 1993, 363, 603–605. DOI: 10.1038/363603a0.
  • Moniruzzaman, M., .; Winey, K. I. Polymer Nanocomposites Containing Carbon Nanotubes. Macromolecules. 2006, 39, 5194–5205. DOI: 10.1021/ma060733p.
  • Ansari, M. O.; Khan, M. M.; Ansari, S. A.; Amal, I.; Lee, J.; Cho, M. H. pTSA Doped Conducting Graphene/polyaniline Nanocomposite Fibers: Thermoelectric Behavior and Electrode Analysis. Chem. Eng. J. 2014, 242, 155–161. DOI: 10.1016/j.cej.2013.12.033.
  • Liu, Z.; Liu, Q.; Huang, Y.; Ma, Y.; Yin, S.; Zhang, X.; Sun, W.; Chen, Y. Organic Photovoltaic Devices Based on a Novel Acceptor Material: Graphene. Adv.Mate. 2008, 20, 3924–3930. DOI: 10.1002/adma.v20:20.
  • Robinson, J. T.; Perkins, F. K.; Snow, E. S.; Wei, Z.; Sheehan, P. E. Reduced Graphene Oxide Molecular Sensors. Nano Lett. 2008, 8(10), 3137–3140.
  • Li, P.; Chen, W.; Jia, Y.; Bai, S.; Wang, Q. Fabrication of Poly (Vinyl Alcohol)/graphene Nanocomposite Foam Based on Solid State Shearing Milling and Supercritical Fluid Technology. Mater. Des. 2017, 134, 121–131. DOI: 10.1016/j.matdes.2017.08.045.
  • Yang, Z.; Xu, D.; Liu, J.; Liu, J.; Li, L.; Zhang, L.; Lv, J. Fabrication and Characterization of Poly (Vinyl Alcohol)/carbon Nanotube Melt-spinning Composites Fiber. Prog. Nat. Sci. 2015, 25(5), 437–444.
  • Vasanthkumar, M.; Bhatia, R.; Arya, V. P.; I., S.; V., P.; H.S., J. Characterization, Charge Transport and Magnetic Properties of Multi-walled Carbon Nanotube–polyvinyl Chloride Nanocomposites. Phys E: Low-dimensional Syst Nanostruct. 2014, 56, 10–16. DOI: 10.1016/j.physe.2013.08.010.
  • Wang, H.; Xie, G.; Ying, Z.; Tong, Y.; Zeng, Y. Enhanced Mechanical Properties of Multi-layer Graphene Filled Poly (Vinyl Chloride) Composite Films. J. Mater. Sci. Technol. 2015, 31, 340–344. DOI: 10.1016/j.jmst.2014.09.009.
  • Ghaedi, M.; Ansari, A.; Habibi, M. H.; Asghari, A. R. Removal of Malachite Green from Aqueous Solution by Zinc Oxide Nanoparticle Loaded on Activated Carbon: Kinetics and Isotherm Study. J. Ind. Eng. Chem. 2014, 20(1), 17–28.
  • Roosta, M.; Ghaedi, M.; Shokri, N.; Daneshfar, A.; Sahraei, R.; Asghari, A. Optimization of the Combined Ultrasonic Assisted/adsorption Method for the Removal of Malachite Green by Gold Nanoparticles Loaded on Activated Carbon: Experimental Design. Spectrochim. Acta, Part A: Mol. Biomol. Spectrosc. 2014, 118, 55–65. DOI: 10.1016/j.saa.2013.08.082.
  • Sagitha, P.; Sarada, K.; Muraleedharan, K. One-pot Synthesis of Poly Vinyl Alcohol (PVA) Supported Silver Nanoparticles and Its Efficiency in Catalytic Reduction of Methylene Blue. Trans. Nonferrous Met. Soc. China. 2016, 26, 2693–2700. DOI: 10.1016/S1003-6326(16)64397-2.
  • Mortazavi, B.; Yang, H.; Mohebbi, F.; Cuniberti, G.; Rabczuk, T. Graphene or h-BN Paraffin Composite Structures for the Thermal Management of Li-ion Batteries: A Multiscale Investigation. Appl. Energy. 2017, 202, 323–334. DOI: 10.1016/j.apenergy.2017.05.175.
  • Hamdia, K. M.; Silani, M.; Zhuang, X.; He, P.; Rabczuk, T. Stochastic Analysis of the Fracture Toughness of Polymeric Nanoparticle Composites Using Polynomial Chaos Expansions. Int. J. Fract. 2017, 206, 215–227. DOI: 10.1007/s10704-017-0210-6.
  • Talebi, H.; Silani, M.; Bordas, S. P. A.; Kerfriden, P.; Rabczuk, T. A Computational Library for Multiscale Modeling of Material Failure. Comput. Mech. 2014, 53, 1047–1071. DOI: 10.1007/s00466-013-0948-2.
  • Fu, J.; Xu, Z.; Li, Q.-S.; Chen, S.; An, S.-Q.; Zeng, Q.-F.; Zhu, H.-L. Treatment of Simulated Wastewater Containing Reactive Red 195 by Zero-valent Iron/activated Carbon Combined with Microwave Discharge Electrodeless Lamp/sodium Hypochlorite. J. Environ. Sci. 2010, 22, 512. DOI: 10.1016/S1001-0742(09)60142-X.
  • Renganathan, S.; Thilagaraj, W. R.; Miranda, L. R.; Gautam, P.; Velan, M. Accumulation of Acid Orange 7, Acid Red 18 and Reactive Black 5 by Growing Schizophyllum Commune. Bioresour. Technol. 2006, 97, 2189–2193. DOI: 10.1016/j.biortech.2005.09.018.
  • Navarro, P.; Pellicer, J. A.; Gómez‐López, V. M. Degradation of Azo Dye by an UV/H2O2 Advanced Oxidation Process Using an Amalgam Lamp. Water Environ. J. 2019, 33, 476–483. DOI: 10.1111/wej.12418.
  • Marczenko, Z.;. Separation and Spectrophotometric Determination of Elements (Ellis Horwood Series in Analytical Chemistry Series); John Wiley & Sons: Australia, 1986.
  • Palani, P. B.; Kannan, R.; Rajashabala, S.; Rajendran, S.; Velraj, G. Effect of Nano-composite on Polyvinyl Alcohol-based Proton Conducting Membrane for Direct Methanol Fuel Cell Applications. Ionics. 2015, 21, 507–513. DOI: 10.1007/s11581-014-1193-1.
  • Gong, F.; Feng, M.; Zhao, C.; Zhang, S.; Yang, M. Thermal Properties of Poly (Vinyl Chloride)/montmorillonite Nanocomposites. Polym. Degrad. Stab. 2004, 84, 289–294. DOI: 10.1016/j.polymdegradstab.2003.11.003.
  • Zhang, F.; Weidmann, A.; Nebe, J. B.; Burkel, E. Osteoblast Cell Response to Surface-modified Carbon Nanotubes. Mater. Sci. Eng C. 2012, 32, 1057–1061. DOI: 10.1016/j.msec.2010.07.007.
  • Sabaa, M. W.; Abdallah, H. M.; Mohamed, N. A.; Mohamed, R. R. Synthesis, Characterization and Application of Biodegradable Crosslinked Carboxymethyl Chitosan/poly (Vinyl Alcohol) Clay Nanocomposites. Mater. Sci. Eng C. 2015, 56, 363–373. DOI: 10.1016/j.msec.2015.06.043.
  • Hasan, M.; Lee, M. Enhancement of the Thermo-mechanical Properties and Efficacy of Mixing Technique in the Preparation of graphene/PVC Nanocomposites Compared to Carbon nanotubes/PVC. Prog. Nat. Sci. 2014, 24, 579–587. DOI: 10.1016/j.pnsc.2014.10.004.
  • Surudžić, R.; Janković, A.; Mitrić, M.; Matić, I.; Juranić, Z. D.; Živković, L.; Mišković-Stanković, V.; Rhee, K. Y.; Park, S. J.; Hui, D.;; et al. The Effect of Graphene Loading on Mechanical, Thermal and Biological Properties of Poly (Vinyl Alcohol)/graphene Nanocomposites. J. Ind. Eng. Chem. 2016, 34, 250–257. DOI: 10.1016/j.jiec.2015.11.016.
  • Hussein, M. A.; El-Shishtawy, R. M.; Obaid, A. Y. The Impact of Graphene Nano-plates on the Behavior of Novel Conducting Polyazomethine Nanocomposites. RSC Adv. 2017, 7, 9998–10008. DOI: 10.1039/C6RA28756E.
  • Hussein, M. A.; Abu-Zied, B. M.; Asiri, A. M. The Role of Mixed Graphene/Carbon Nanotubes on the Coating Performance of G/CNTs/Epoxy Resin Nanocomposites. Int. J. Electrochem. Sci. 2016, 11, 7644–7659. DOI: 10.20964/2016.09.13.
  • Hussein, M. A.; Abu-Zied, B. M.; Asiri, A. M. Fabrication of EPYR/GNP/MWCNT Carbon-based Composite Materials for Promoted Epoxy Coating Performance. RSC Adv. 2018, 8, 23555–23566. DOI: 10.1039/C8RA03109F.
  • Katowah, D.; Hussein, M. A.; Rahman, M. M.; Alsulami, Q. A.; Alam, M. M.; Asiri, A. M., Fabrication of Hybrid PVA–PVC/SnZnOx/SWCNTs Nanocomposites as Sn2+ Ionic Probe for Environmental Safety, Polym. Plast. Technol. Eng., 2019, 59, 642–657. Doi: 10.1080/25740881.2019.1673409
  • Katowah, D.; Hussein, M. A.; Alam, M. M.; Sobahi, T. R.; Gabal, M. A.; Asiri, A. M.; Rahman, M. M. Poly(pyrrole-co-o-toluidine) Wrapped CoFe2O4/R(GO–OXSWCNTs) Ternary Composite Material for Ga3+ Sensing Ability. RSC Adv. 2019, 9, 33052. DOI: 10.1039/C9RA03593A.
  • Hussein, M. A.;. Eco-friendly Polythiophene (Keto-amine) S Based on Cyclopentanone Moiety for Environmental Remediation. J. Polym. Environ. 2018, 26, 1194–1205. DOI: 10.1007/s10924-017-1023-4.
  • Linares, J.; Matesanz, M. C.; Feito, M. J.; Salavagione, H. J.; Martínez, G.; Gómez-Fatou, M.; Portolés, M. T. Influence of the Covalent Immobilization of Graphene Oxide in Poly (Vinyl Alcohol) on Human Osteoblast Response. Colloids Surf. B. 2016, 138, 50–59. DOI: 10.1016/j.colsurfb.2015.11.035.
  • Palágyi, S.; Braun, T. Separation and Preconcentration of Trace Elements and Inorganic Species on Solid Polyurethane Foam Sorbents. In Preconcentration Techniques for Trace Elements; Alfassi, Z., Wai, C. M., Eds.; London CRC Press Inc: Boca Raton, Florida USA, 1992, 363–400.
  • Weber, W.; Morris, J. Intraparticle Diffusion during the Sorption of Surfactants onto Activated Carbon. J. Sanit. Eng. Div. Am. Soc. Civ. Eng. 1963, 89, 53–61.
  • Al-Saidi, H.; Abdel-Fadeel, M. A.; El-Sonbati, A. Z.; El-Bindary, A. A. Multi-walled Carbon Nanotubes as an Adsorbent Material for the Solid Phase Extraction of Bismuth from Aqueous Media: Kinetic and Thermodynamic Studies and Analytical Applications. J. Mol. Liq. 2016, 216, 693–698. DOI: 10.1016/j.molliq.2016.01.086.
  • El-Shahawi, M.; Othman, M.; Abdel-Fadeel, M. Kinetics, Thermodynamic and Chromatographic Behaviour of the Uranyl Ions Sorption from Aqueous Thiocyanate Media onto Polyurethane Foams. Anal. Chim. Acta. 2005, 546, 221–228. DOI: 10.1016/j.aca.2005.05.018.

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