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Original Articles

Effect of Functionalized Carbon Nanotubes with Carboxylic Functional Group on the Mechanical and Thermal Properties of Styrene Butadiene Rubber

Pages 617-627 | Published online: 11 Jul 2011

References

  • Kraus , G. 1965 . Reinforcement of Elastomers , Wiley-Interscience : New York .
  • MacKenzie , C.I. 1984 . Stress relaxation in carbon-black filled rubber vulcanizates at moderate strains . Journal of Polymer , 25 : 559 – 568 .
  • Jalham , I.S. and Maita , I.J. 2006 . Testing and evaluation of rubber-base composites reinforced with silica sand . J. Comp. Mater. , 40 : 99 – 112 .
  • George , K.M. , Varkey , J.K. , George , B. , Joseph , S. , Thomas , K.T. and Mathew , N.M. 2006 . Physical and dynamic mechanical properties of silica filled nitrile rubber modified with epoxidised natural rubber . Kautsch Gummi Kunstst , 59 : 544
  • Arroyo , M. , Lo´pez-Manchado , M.A. and Herrero , B. 2003 . Organo-montmorillonite as substitute of carbon black in natural rubber compounds . Polymer , 44 : 2447
  • Lo´pez-Manchado , M.A. , Herrero , B. and Arroyo , M. 2003 . Preparation and characterization of NR/organoclay nanocomposites . Polym. Int. , 52 : 1070
  • Lo´pez-Manchado , M.A. , Herrero , B. and Arroyo , M. 2004 . Reinforcement of natural rubber with organoclay . Polym. Int. , 53 : 1766
  • Javier , C. , Haris , R. , Raquel , V. , Shigeyuki , T. , Benjamin , S.H. , Emmanuel , P.G. and Miguel , A.L. 2008 . Effect of nanoclay on natural rubber microstructure . Macromolecules , 41 : 6763 – 6772 .
  • Wong , E.W. , Sheehan , P.E. and Lieber , C.M. 1997 . Nanobeam mechanics: Elasticity, strength and toughness of nanorods and nanotubes . Science , 277 : 1971 – 1975 .
  • Treacy , M. , Ebbesen , T.W. and Gibson , J.M. 1996 . Exceptionally high Young's modulus observed for individual carbon nanotubes . Nature , 381 : 678
  • Ijima , S. 1991 . Helical microtubules of graphitic carbon . Nature , 354 : 56
  • Saito , R. , Dresselhaus , G. and Dresselhaus , M.S. 1999 . Physical Properties of Carbon Nanotubes , 1 – 4 . London : Imperial College Press .
  • Scott , C.D. 2001 . Growth mechanisms for single-walled carbon nanotubes in a laser-ablation process . Applied Physics A , : 72
  • Ebbesen , T.W. and Ebbesen , T.W. , eds. 1997 . Carbon Nanotubes: Preparation and Properties , 139 – 162 . Boca Raton, FL : CRC Press .
  • Andrews , R. , Jacques , D. , Rao , A.M. , Derbyshire , F. , Qian , D. , Fan , X. , Dickey , E.C. and Chen , J. 1999 . Continuous production of aligned carbon nanotubes: A step closer to commercial realization . Chem. Phys. Lett. , 303 : 467 – 474 .
  • Dalton , A.B. , Collins , S. , Munoz , E. , Razal , J.M. , Ebron , V.H. , Ferraris , J.P. , Coleman , J.N. , Kim , B.G. and Baughman , R.H. 2003 . Super-tough carbon-nanotube fibres . Nature , 423 : 703
  • Phillip , F.S. and Ben , S. 1996 . News update . The American Institute of Physics Bulletin of Physics News , 279 Story #2
  • Dujardin , E. , Ebbesen , T.W. , Krishnan , A. , Yianilos , P.N. and Treacy , M.J. 1998 . Young's modulus of single-walled nanotubes . Physical Review B , 58 ( 20 ) : 14013 – 14019 .
  • Forró , L. , Salvetat , J.P. , Bonard , J.M. , Basca , R. , Thomson , N.H. , Garaj , S. Nga , L. Ta . “ Electronic and Mechanical Properties of Carbon Nanotubes ” . In Science and Application of Nanotubes , Edited by: Tománek , D. and Enbody , R.J. 297 New York : Plenum .
  • Baughman , R.H. , Zakhidov , A.A. and Heer , W.A. 2002 . Carbon nanotubes — the route toward applications . Science , 279 : 787
  • Qian , D. , Dickey , E.C. , Andrews , R. and Rantell , T. 2000 . Load transfer and deformation mechanisms in carbon nanotube-polystyrene composites . Appl. Phys. Lett. , 76 : 2868 – 2870 .
  • Tasis , D. , Bianco , N.A. and Prato , M. 2006 . Chemistry of carbon nanotubes . Chem. Rev. , 106 : 1105
  • Satapathy , B.K. , Weidisch , R. , Potschke , P. and Janke , A. 2005 . Crack toughness behavior of multi-walled carbon nanotube (MWNT)/polycarbonate nanocomposites . Macromol. Rapid Commun. , 26 : 1246
  • Andrews , R. , Jacques , D. , Minot , M. and Rantell , T. 2002 . Fabrication of carbon multi-walled nanotube/polymer composites by shear mixing . Mater. Eng. , 287 : 395
  • Kearns , J.C. and Shambaugh , R.L. 2002 . Polypropylene fibers reinforced with carbon nanotubes . J. Appl. Polym. Sci. , 86 : 2079
  • Thostenson , E.T. , Ren , Z.F. and Chou , T.W. 2001 . Advances in the science and technology of carbon nanotubes and their composites: A review . Comp. Sci. Technol. , 61 : 1899
  • Muataz , A.A. , Nazlia , G. , El-Sadig , M. , Hairani , T. , Chuah , T.G. , Maan , F.A. , Fakhru'l-Razi , A. and Dayang , R. 2006 . Effect of multi-walled carbon nanotubes (MWCNTS) on the mechanical properties of natural rubber . Journal of Fullerenes, Nanotubes and Carbon Nanostructures , 14 ( 4 ) : 641 – 649 .
  • Nazlia , G. , Fakhru'l-Razi , A. , Suraya , A.R. and Muataz , A.A. 2007 . Multi-walled carbon nanotubes/styrene butadiene rubber (SBR) nanocomposite . Journal of Fullerenes, Nanotubes and Carbon Nanostructures , 15 ( 3 ) : 207 – 214 .
  • Kannan , B. and Burghard , M. 2005 . Chemically functionalized carbon nanotubes . Small , 1 : 180 – 192 .
  • Abdelghani , L. , Vivet , G. , Nouet , B.B. , Doudou , C. , Poilâne , J. and Chen , J. 2008 . A chemical method to graft carbon nanotubes onto a carbon fiber . Materials Letters , 62 : 394 – 439 .
  • Luqi , L. , Yujun , Q. , Zhi-Xin , G. and Daoben , Z. 2003 . Reduction of solubilized multi-walled carbon nanotubes . Carbon , 41 : 331 – 335 .
  • Muataz , A.A. , Nazif , N. , Faridah , Y. , Mohammed , F. , Chantara , T.R. , Mamdouh , A. , Faraj , A.A.,. , Khalid , M. and Adnan , M. Al-A . 2010 . Radiation vulcanization of natural rubber latex loaded with carbon nanotubes . Journal of Fullerenes, Nanotubes and Carbon Nanostructures , 18 : 61 – 75 .
  • Kannan , B. and Burghard , M. 2005 . Chemically functionalized carbon nanotubes . Small , 1 : 180 – 192 .
  • Brancam , C. , Frusteri , F. , Magazu , V. and Mangione , A. 2004 . Characterization of carbon nanotubes by TEM and infrared spectroscopy . J. Phys. Chem. B , 108 : 3469 – 3473 .
  • Luqim , L. , Yujun , Q. , Zhi-Xin , G. and Daoben , Z. 2003 . Reduction of solubilized multi-walled carbon nanotubes . Carbon , 41 : 331 – 335 .
  • Muataz , A.A. , Ahmadun , F. , Guan , C. , Mahdi , E. and Rinaldi , A. 2006 . Effect of reaction temperature on the production of carbon nanotube . NANO: Brief Reports and Reviews , 1 ( 3 ) : 251 – 257 .

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