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Articles

Preparation of iron oxide nanoparticles-decorated carbon nanotube using laser ablation in liquid and their antimicrobial activity

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Pages 1699-1709 | Received 29 Oct 2016, Accepted 30 Dec 2016, Published online: 01 Feb 2017

References

  • Ae JH, Young JK. 2011. Nanoantibiotics: a new paradigm for treating infectious diseases using nanomaterials in the antibiotics resistant era. J Contr Rel 156:128–145.
  • Ahmed A, Evans C, Hussein J, Kapil G, Dinesh K, Ramachandra RMS, et al. 2013. Liquid phase – pulsed laser ablation: a route to fabricate different carbon nanostructures. Appl Surf Sci 302:141–144.
  • Ameer A, Arham SA, Mohammad O. 2012. Antimicrobial activity of metal oxide nanoparticles against Gram-positive and Gram-negative bacteria: a comparative study. Intern J Nanomed 7:6003–6009.
  • Buzea C, Pacheco II, Robbie K. 2007. Nanomaterials and nanoparticles: sources and toxicity. Biointerphases 2:MR17–MR71.
  • Cabeen MT, Wanger CJ. 2005. Bacterial cell shape. Nat Rev Microbiol 3:601–610.
  • Chandre MW, Khotso T, Nazeem J. 2011. Metallo-graphene nanocomposite electrocatalytic platform for the determination of toxic metal ions. Sensors 11:3970–3987.
  • Chao G, Wenwen L, Hisao M, Yutaka N, Toru M. 2006. Magnetic carbon nanotubes: synthesis by electrostatic self-assembly approach and application in biomanipulations. J Phys Chem B110:7213–7220.
  • Chao W, Priyanka S, Yeon JK, Ramya M, Davaajargal M, Dandan W, Chi-Gyu J, Deok CY. 2016. Characterization and antimicrobial application of biosynthesized gold and silver nanoparticles by using Microbacterium resistens. Artif Cells Nanomed Biotechnol 44:1714–1721.
  • Hamidreza S, Ramin S-G, Maryam K. 2014. Study in synthesis and characterization of carbon nanotubes decorated by magnetic iron oxide nanoparticles. Intern Nano Lett 4:129–135.
  • Harshita S, Krishan K, Chetan C, Pawan KM, Bhuvaneshwar V. 2016. Development and characterization of metal oxide nanoparticles for the delivery of anticancer drug. Artif Cells Nanomed Biotechnol 44:672–679.
  • Ion A, Alexandru MG, Alina MH. 2013. Biohybrid nanostructured iron oxide nanoparticles and satureja hortensis to prevent fungal biofilm development. Intern J Mol Sci 14:18110–18123.
  • Jadhav S, Gaikwad S, Nimse M, Rajbhoj A. 2011. Copper oxide nanoparticles: synthesis, characterization and their antibacterial activity. J Clus Sci 22:121–129.
  • Khashan KS, Sulaiman GM, Ameer FA, Napolitano G. 2016a. Synthesis, characterization and antibacterial activity of colloidal NiO nanoparticles. Pak J Pharm Sci 29:541–546.
  • Khashan KS, Sulaiman GM, Abdul Ameer FA, Napolitano G. 2016b. Synthesis and antibacterial activity of CuO nanoparticles suspension induced by laser ablation in liquid. Arab J Sci Eng 41:301–310.
  • Macarena P, María AG, Elena L-R, Gema J, Juan AM. 2013. How can nanotechnology help to repair the body? Advances in cardiac, skin, bone, cartilage and nerve tissue regeneration. Materia 6:1333–1359.
  • Mohammad JH, Katharina MF, Ali AA, Dorleta JA, Idoia RL, Teofilo R, et al. 2012. Antibacterial properties of nanoparticles. Trends Biotech 30:499–511.
  • Priyanka S, Yeon JK, Chao W, Ramya M, Mohamed EF, Deok CY. 2016. Biogenic silver and gold nanoparticles synthesized using red ginseng root extract, and their applications. Artif Cells Nanomed Biotechnol 44:811–816.
  • Ravishankar RV, Jamuna BA. 2011. Nanoparticles and their potential application as antimicrobials. In: Méndez-Vilas A, Eds. Science Against Microbial Pathogens: Communicating Current Research and Technological Advances, vol. 1. Spain: Formatex Research Center, pp. 197–209.
  • Shu FS, Anna CSS. 2014. Highly efficient antibacterial iron oxide@carbon nanochains from Wüstite precursor nanoparticles. Appl Mater Interfaces 6:20154–20163.
  • Simona LI, Alina MP, Philippe LC, Daniela P. 2013. Synthesis and antibacterial and antibiofilm activity of iron oxide glycerol nanoparticles obtained by coprecipitation method. J Chem 2013:1–6.
  • Tianju F, Wenjin Z, Qiaoli N, Songzhao T, Kaiyu C, Yidong L, et al. 2015. Fabrication of high-quality graphene oxide nanoscrolls and application in supercapacitor. Nanosc Res Lett 10:192–200.
  • Wei S, Paul A, Mai Y. 2013. Carbon nanotubes for use in medicine: potentials and limitations. In: Satoru S, Ed. Syntheses and Applications of Carbon Nanotubes and Their Composites. Rijeka, Croatia: InTech, pp. 285–311 (Chapter 13).
  • Yan S, Kezheng C, Xuegang Y, Lian G. 2010. Preparation and characterization of biocompatible magnetic carbon nanotubes. Appl Surf Sci 257:362–366.
  • Ya-Ping S, Kefu F, Yi L, Weijie H. 2002. Functionalized carbon nanotubes: properties and applications. Acc Chem Res 35:1096–1104.
  • Zabihi F, Taleshi F, Salmani A, Pahlavan A, Dehghan-niarostami N, Vadadi MM. 2015. Influence of carbon nanotubes support on the morphology of Fe3O4 nanoparticles. Appl Nanosci 5:267–272.
  • Zhang W, Zuo XD, Wu WC. 2015. Synthesis and magnetic properties of carbon nanotube-iron oxide nanoparticle composites for hyperthermia: a review. Rev Adv Mater Sci 40:165–117.

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