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Original Articles

Graphene Modified Lipophilically by Stearic Acid and its Composite With Low Density Polyethylene

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Pages 1193-1204 | Received 12 Sep 2013, Accepted 26 Nov 2013, Published online: 17 Jul 2014

References

  • Kim, H.; Abdala, A.A.; Macosko, C.W. Graphene/polymer nanocomposites. Macromolecules 2010, 43, 6515.
  • Li, D.; Mueller, M.B.; Gilje, S.; Kaner, R.B.; Wallace, G.G. Processable aqueous dispersions of graphene nanosheets. Nat. Nanotechnol. 2008, 3, 101.
  • McAllister, M.J.; Li, J.-L.; Adamson, D.H.; Schniepp, H.C.; Abdala, A.A.; Liu, J.; Herrera-Alonso, M.; Milius, D.L.; Car, R.; Prud’homme, R.K. Single sheet functionalized graphene by oxidation and thermal expansion of graphite. Chem. Mater. 2007, 19, 4396.
  • Kim, H.; Macosko, C.W. Processing-property relationships of polycarbonate/graphene composites. Polymer 2009, 50, 3797.
  • Steurer, P.; Wissert, R.; Thomann, R.; Mülhaupt, R. Functionalized graphenes and thermoplastic nanocomposites based upon expanded graphite oxide. Macromol. Rapid Commun. 2009, 30, 316.
  • Radovic, L.R.; Silva-Tapia, A.B.; Vallejos-Burgos, F. Oxygen migration on the graphene surface. 1. Origin of epoxide groups. Carbon 2011, 49, 4218.
  • Niyogi, S.; Bekyarova, E.; Itkis, M.E.; McWilliams, J.L.; Hamon, M.A.; Haddon, R.C. Solution properties of graphite and graphene. J. Am. Chem. Soc. 2006, 128, 7720.
  • Fang, M.; Wang, K.; Lu, H.; Yang, Y.; Nutt, S. Single-layer graphene nanosheets with controlled grafting of polymer chains. J. Mater. Chem. 2010, 20, 1982.
  • Yang, H.; Li, F.; Shan, C.; Han, D.; Zhang, Q.; Niu, L.; Ivaska, A. Covalent functionalization of chemically converted graphene sheets via silane and its reinforcement. J. Mater. Chem. 2009, 19, 4632.
  • Yu, W.; Xie, H.; Chen, L.; Li, Y. The functionalization and potential applications of graphene. In IEEE 2010 Symposium on Photonics and Optoelectronic (SOPO); IEEE, 2010, pp. 1–4.
  • Oh, S.M.; Oh, K.M.; Dao, T.D.; Lee, H.-I.; Jeong, H.M.; Kim, B.K. The modification of graphene with alcohols and its use in shape memory polyurethane composites. Polym. Int. 2013, 62, 54.
  • Hsiao, M.-C.; Liao, S.-H.; Yen, M.-Y.; Liu, P.-I.; Pu, N.-W.; Wang, C.-A.; Ma, C.-C.M. Preparation of covalently functionalized graphene using residual oxygen-containing functional groups. ACS Appl. Mater. Interfaces 2010, 2, 3092.
  • Kuila, T.; Bose, S.; Hong, C.E.; Uddin, M.E.; Khanra, P.; Kim, N.H.; Lee, J.H. Preparation of functionalized graphene/linear low density polyethylene composites by a solution mixing method. Carbon 2011, 49, 1033.
  • Wang, G.; Shen, X.; Wang, B.; Yao, J.; Park, J. Synthesis and characterisation of hydrophilic and organophilic graphene nanosheets. Carbon 2009, 47, 1359.
  • Compton, O.C.; Dikin, D.A.; Putz, K.W.; Brinson, L.C.; Nguyen, S.T. Electrically conductive “alkylated” graphene paper via chemical reduction of amine-functionalized graphene oxide paper. Adv. Mater. 2010, 22, 892.
  • Cao, Y.; Feng, J.; Wu, P. Alkyl-functionalized graphene nanosheets with improved lipophilicity. Carbon 2010, 48, 1683.
  • Tessonnier, J.-P.; Barteau, M.A. Dispersion of alkyl-chain-functionalized reduced graphene oxide sheets in nonpolar solvents. Langmuir 2012, 28, 6691.
  • Kim, S.; Seo, J.; Drzal, L.T. Improvement of electric conductivity of LLDPE based nanocomposite by paraffin coating on exfoliated graphite nanoplatelets. Compos. Part A: Appl. Sci. Manuf. 2010, 41, 581.
  • Choi, J.T.; Kim, D.H.; Ryu, K.S.; Lee, H.-i.; Jeong, H.M.; Shin, C.M.; Kim, J.H.; Kim, B.K. Functionalized graphene sheet/polyurethane nanocomposites: Effect of particle size on physical properties. Macromol. Res. 2011, 19, 809.
  • Blank, W.J.; He, Z.; Picci, M. Catalysis of the epoxy-carboxyl reaction. J. Coating. Techn. Res. 2002, 74, 33.
  • Do, H.S.; Park, J.H.; Kim, H.J. Synthesis and characteristics of photoactive-hydrogenated rosin epoxy methacrylate for pressure sensitive adhesives. J. Appl. Polym. Sci. 2009, 111, 1172.
  • Socrates, G. Infrared Characteristic Group Frequencies; John Wiley & Sons: Chichester 1994, pp. 21, 68, 123.
  • Mawhinney, D.B.; Naumenko, V.; Kuznetsova, A.; Yates, J.T.; Liu, J.; Smalley, R. Infrared spectral evidence for the etching of carbon nanotubes: ozone oxidation at 298 K. J. Am. Chem. Soc. 2000, 122, 2383.
  • Quintana, M.; Spyrou, K.; Grzelczak, M.; Browne, W.R.; Rudolf, P.; Prato, M. Functionalization of graphene via 1,3-dipolar cycloaddition. ACS Nano 2010, 4, 3527.
  • Hontoria-Lucas, C.; Lopez-Peinado, A.; López-González, J.de D.; Rojas-Cervantes, M.; Martin-Aranda, R. Study of oxygen-containing groups in a series of graphite oxides: physical and chemical characterization. Carbon 1995, 33, 1585.
  • Krauss, B.; Lohmann, T.; Chae, D.-H.; Haluska, M.; von Klitzing, K.; Smet, J.H. Laser-induced disassembly of a graphene single crystal into a nanocrystalline network. Phys. Rev. B 2009, 79, 165428 . (9 pages).
  • Rao, C.N.R.; Sood, A.K.; Subrahmanyam, K.S.; Govindaraj, A.; Graphene: The new two-dimensional nanomaterial. Angew. Chem. Int. Ed. 2009, 48, 7752.
  • Su, C.-Y.; Xu, Y.; Zhang, W.; Zhao, J.; Tang, X.; Tsai, C.-H.; Li, L.-J. Electrical and spectroscopic characterizations of ultra-large reduced graphene oxide monolayers. Chem. Mater. 2009, 21, 5674.
  • Yoon, J.T.; Jeong, Y.G.; Lee, S.C.; Min, B.G. Influences of poly(lactic acid)-grafted carbon nanotube on thermal, mechanical, and electrical properties of poly(lactic acid). Polym. Adv. Technol. 2009, 20, 631.
  • Jiang, X.; Drzal, L.T. Multifunctional high-density polyethylene nanocomposites produced by incorporation of exfoliated graphene nanoplatelets 2: Crystallization, thermal and electrical properties. Polym. Compos. 2012, 33, 636.

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