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Original Articles

Synthesis and Characterization of Nano-Silver Incorporated Natural Rubber Latex Foam

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Pages 605-611 | Published online: 27 Apr 2012

REFERENCES

  • Richard , S. Latex foam-Talay process . Malays. Rubber Technol. Develop. 2004 , 4 , 6 – 10 .
  • Moore , S.L. ; Payne , D.N. Types of antimicrobial agents . In: Fraise , A.P. ; Lambert , P.A. ; Maillard , J.-Y. , eds. Russell, Hugo, and Ayliffe's Principles and Practice of Disinfection, Preservation & Sterilization, , 4th Ed. , Blackwell Publishing Ltd. : Oxford , UK , 2008 , doi: 10.1002/9780470755884.ch2 .
  • Sondi , I. ; Salopek-Sondi , B. Silver nanoparticles as antimicrobial agent a case study on E.coli as a model for Gram-negative bacteria . J. Coll. Interf. Sci. 2004 , 275 , 177 – 182 .
  • Silvestry-Rodriguez , N. ; Enue , E. ; Sicairos-Ruelas , C. ; Gerba , P. ; Bright , K.R. Silver as a disinfectant . Rev. Environ. Contam. Toxicol. 2007 , 191 , 23 – 45 .
  • Singh , G. ; Patankar , R.B. ; Gupta , V.K. The preparation of polymer/silver nanocomposites and application as an antibacterial material . Polym.-Plast. Technol. Eng. 2010 , 49 , 1329 – 1333 .
  • Martínez-Castañón , G.A. ; Niño-Martínez , N. ; Martínez-Gutierrez , F. ; Martínez-Mendoza , J.R. ; Ruiz , F. Synthesis and antibacterial activity of silver nanoparticles with different sizes . J. Nanopart. Res. 2007 , 10 , 1343 – 1348 .
  • Prema , P. ; Raju , R. Fabrication and characterization of silver nanoparticles and its potential antibacterial activity . Biotechnol. Bioproc. Eng. 2009 , 14 , 842 – 847 .
  • Chudasama , B. ; Vala , A.K. ; Andhariya , N. ; Mehta , R.V. ; Upadhya , R.V. High bacterial resistant silver nanoparticles: Synthesis and antibacterial activities. J. Nanopart. Res. 2010, 12, 1677–1685.
  • Guifen , F. ; Vary , P.S. ; Lin , C.-T. Anatase TiO2 nanocomposites for antimicrobial coatings . J. Phys. Chem. 2005 , B 109 , 8889 – 8898 .
  • Liua , Y. ; Wanga , X. ; Yanga , F. ; Yang , X. Excellent antimicrobial properties of mesoporous anatase TiO2 and Ag/TiO2 composite films . Micropor. Mesopor. Mater. 2008 , 114 , 431 – 439 .
  • Padmavathy , N. ; Vijayaraghavan , R. Enhanced bioactivity of ZnO nanoparticles—An antimicrobial study . Sci. Technol. Adv. Mater. 2008 , 9 , 035004 (7pp).
  • Tam , K.H. ; Djurišić , A.B. ; Chan , C.M.N. ; Xi , Y.Y. ; Tse , C.W. ; Leung , Y.H. ; Chan , W.K. ; Leung , F.C.C. ; Au , D.W.T. Antibacterial activity of ZnO nanorods prepared by a hydrothermal method . Thin Solid Films 2008 , 516 , 6167 – 6174 .
  • Li , X. ; Xing , Y. ; Jiang , Y. ; Ding , Y. ; Li , W. Antimicrobial activities of ZnO powder-coated PVC film to inactivate food pathogens . Inter. J. Food Sci. Technol. 2009 , 44 , 2161 – 2168 .
  • Jones , N. ; Ray , B. ; Ranjit , K.T. ; Manna , A.C. Antibacterial activity of ZnO nanoparticle suspensions on a broad spectrum of microorganisms . FEMS Microbiol Lett. 2008 , 279 , 71 – 76 .
  • Zhang , L. ; Jiang , Y. ; Ding , Y. ; Daskalakis , N. ; Jeuken , L. ; Povey , M. ; Alex , J. ; O'Neill ; York , D.W. Mechanistic investigation into antibacterial behavior of suspensions of ZnO nanoparticles against E coli . J. Nanopart. Res. 2010 , 12 , 1625 – 1636 .
  • Xie , Y. ; He , Y. ; Irwin , P.L. ; Jin , T. ; Shi , X. Antibacterial activity and mechanism of action of zinc oxide nanoparticles against Campylobacter jejuni . Appl. Environ. Microbiol. 2011 , 77 ( 7 ), 2325 – 2331 .
  • Tayel , A. A. ; Wael , F. El-Tras. ; Moussa , S. ; Ashraf , F. El-Baz. ; Mahrous , H. ; Mohammed , F. Salem. ; Brimer , L. Antibacterial action of zinc oxide nanoparticles against food borne pathogens . J. Food Saf. 2011 , 31 , 211 – 218 .
  • Sotirious , G.A. ; Pratsinis , S.E. Antibacterial activity of nanosilver ions and particles, Environ . Sci. Technol. 2010 , 44 , 5649 – 5654 .
  • Ayala-Núñez , N.V. ; Villegas , H.H.L. ; Turrent , L.D.C.I. ; Padilla , C.R. Silver nanoparticles toxicity and bactericidal effect against Methicillin-Resistant Staphylococcus aureus . Nanoscale does matter. Nanobiotechnol. 2009 , 5 , 2 – 9 .
  • Rai , M. ; Yadav , A. ; Gade , A. Silver nanoparticles as a new generation of antimicrobials . Biotechnol. Advan. 2008 , 27 , 76 – 83 .
  • Morones , J.R. ; Elechiguerra , J.L. ; Camacho , A. ; Holt , K. ; Kouri , J.B. ; Ramírez , J.T. ; Yacaman , M.J. The bactericidal effect of silver nanoparticles . Nanotechnology 2005 , 16 , 2346 – 2353 .
  • Jung , W.K. ; Koo , H.C. ; Kim , K.W. ; Shin , S. ; Kim , S.H. ; Park , Y.H. Antibacterial activity and mechanism of action of the silver ion in Staphylococcus aureus and Escherichia coli . Appl. Environ. Microbiol. 2008 , 74 , 2171 – 2178 .
  • Kim , K.J. ; Sung , W.S. ; Suh , B.K. ; Moon , S.K. ; Choi , J.S. ; Kim , J.G. ; Lee , D.G. Antifungal activity and mode of action of silver nanoparticles on Candida albicans . Biometal. 2008 , 22 , 235 – 242 .
  • AshaRani , P.V. ; Hande , M.P. ; Valiyaveetti , S. Anti-proliferative activity of silver nanoparticles . Bio. Med Central Cell Biol. 2009 , 10 , 65 .
  • Marambio-Jones , C. ; Hoek , E.M.V. A review of the antibacterial effects of silver nanomaterials and potential implications for human health and the environment . J. Nanopart Res. 2010 , 12 , 1531 – 1551 .
  • Li , Q. ; Mahendra , S. ; Lyon , D.Y. ; Brunet , L. ; Liga , M.V. ; Li , D. ; Alvarez , P.J.J. Antimicrobial nanomaterials for water disinfection and microbial control: Potential applications and implications . Water Res. 2008 , 42 , 4591 – 4602 .
  • Chen , X. ; Schluesener , H.J. Mini review Nanosilver: A nanoproduct in medical application . Toxicol. Lett. 2008 , 176 ( 1 ), 1 – 12 .
  • Noh , S.W. Antibacterial latex foam containing nano-silver particles and method of producing the same, in, wo patent wo/2006/038,761, 2006.
  • Blackley , D.C. Polymer Lattices: Science and Technology . Chapman & Hall, New York 1966 , 3 , 273 – 280 .
  • Monteiro , D.R. ; Gorup , L.F. ; Takamiya , A.S. ; Ruvollo-Filho , A.C. ; Camargo , E.R.D. ; Barbosa , D.B. The growing importance of materials that prevent microbial adhesion: antimicrobial effect of medical devices containing silver . Inter. J. Antimicrob. Agents. 2009 , 34 , 103 – 110 .
  • EN ISO 20645:2004. Determination of antibacterial activity-agar diffusion plate test. 2004, Technical Committee CEN/TC 248.
  • El-Ola , S.M.A. New approach for imparting antimicrobial properties for polyamide and wool containing fabrics . Polym.-Plast. Technol. Eng. 2007 , 46 ( 9 ), 831 – 839 .
  • Mulvaney , P. Surface plasmon spectroscopy of nanosized metal particles . Langmuir 1996 , 12 , 788 – 800 .
  • Moores , A. ; Goettmann , F. The Plasmon band in noble metal nanoparticles an introduction to theory and application . New J. Chem. 2006 , 30 , 1121 – 1132 .
  • Bedre , M.D. ; Basavaraja , S. ; Deshpande , R. ; Balaji , D. ; Venkataraman , A. Preparation and characterization of polypyrrole silver nanocomposites via interfacial polymerization . Inter. J. Polym. Mater. 2010 , 59 , 531 – 543 .
  • Balan , L. ; Malval , J.P. ; Schneider , R. ; Burget , D. Silver nanoparticles: New synthesis, characterization and photophysical properties . Mater. Chem. Phys. 2007 , 104 , 417 – 421 .
  • Smitha , S.L. ; Nissamudeen , K.M. ; Philip , D. ; Gopchandran , K.G. Studies on surface plasmon resonance and photoluminescence of silver nanoparticles . Spectrochem. Acta Pt. A. 2007 , 71 , 186 – 190 .
  • Kamat , P.V. Photophysical, photochemical and photocatalytic aspects of metal nanoparticles . J. Phys. Chem. B 2002 , 106 , 7729 – 7744 .
  • Munro , C.H. ; Smith , W.E. ; Garner , M. ; Clarkson , J. ; White , P.C. Characterization of the surface of a citrate-reduced colloid optimized for use as a substrate for surface-enhanced resonance Raman scattering . Langmuir 1995 , 11 , 3712 – 3720 .
  • Hoonacker , A.V. ; Englebienne , P. Revisiting silver nanoparticle chemical synthesis and stability by optical spectroscopy . Curr. Nanosci. 2006 , 2 , 359 – 371 .
  • Lammle , W. Nanometer particle sizing and stability measurement using a table-top PCCS system. LabPlus Inter. 2005, February/March, 19–24.
  • Abu Bakar , N.H.H. ; Ismail , J. ; Abu Bakar , M. Synthesis and characterization of silver nanoparticles in natural rubber . Mater. Chem. Phys. 2007 , 104 , 276 – 283 .
  • Brydson , J.A. Rubber Chemistry , Applied Science Publishers Ltd. : London , 1978 , ch. 2 , pp. 11 – 18 .

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