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Articles

Simple and inexpensive synthesis of rGO-(Ag, Ni) nanocomposites via green methods

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Pages 155-160 | Received 11 Jun 2015, Accepted 24 Aug 2015, Published online: 24 Feb 2016

References

  • StankovichS., DikinD. A., PinerR. D., KohlhaasK. A., KleinhammesA., JiaY., WuY., NguyenS. T. and RuoffR. S., ‘Synthesis of graphene-based nanosheets via chemical reduction of exfoliated graphite oxide’, Carbon, 2007, 45, 1558–1565.
  • EricksonK., ErniR., LeeZ., AlemN., GannettW. and ZettlA., ‘Determination of the local chemical structure of graphene oxide and reduced graphene oxide’, Adv. Mater., 2010, 22, 4467–4472.
  • BoukhvalovD. W. and KatsnelsonM. I., ‘Modeling of graphite oxide’, J. Am. Chem. Soc., 2008, 130, 10697–10701.
  • LeeD. W., de los SantosL. V., SeoJ. W., FelixL. L., BustamanteA. D., ColeJ. M. and BarnesC. H. W., ‘The structure of graphite oxide: Investigation of its surface chemical groups’, J. Phys. Chem. B, 2010, 114B, 5723–5728.
  • ChenH., MullerM. B., GilmoreK. J., WallaceG. G. and LiD., ‘Mechanically strong, electrically conductive, and biocompatible graphene paper’, Adv. Mater., 2008, 20, 3557–3561.
  • ParkS., AnJ., PottsJ. R., VelamakanniA., MuraliS. and RuoffR. S., ‘Hydrazine-reduction of graphite and graphene oxide’, Carbon, 2011, 49, 3019–3023.
  • ZhuY., MuraliS., CaiW., LiX., SukJ. W., PottsJ. R. and RuoffR. S., ‘Graphene and graphene oxide: synthesis, properties and applications’, Adv. Mater., 2010, 22, 3906–3924.
  • TangZ., ShenS., ZhuangJ. and WangX., ‘Noble-metal-promoted three-dimensional macroassembly of single-layered graphene oxide’, Angew. Chem. Int. Ed., 2010, 49, 4603–4607.
  • LyandresO., ShahN. C., YonzonC. R., J. T.WalshJr, GlucksbergM. R. and DuyneR. P. V., ‘Real-time glucose sensing by surface-enhanced raman spectroscopy in bovine plasma facilitated by a mixed decanethiol/mercaptohexanol partition layer’, Anal. Chem., 2005, 77, 6134–6139.
  • TianZ. Q., ‘Surface-enhanced Raman spectroscopy: advancements and applications’, J. Raman Spectrosc., 2005, 36, 466–470.
  • LombardiJ. R. and BirkeR. L., ‘A unified approach to surface-enhanced Raman spectroscopy’, J. Phys. Chem. C, 2008, 112C, 5605–5617.
  • LuW., ChangG., LuoY., LiaoF. and SunX., ‘Method for effective immobilization of Ag nanoparticles/graphene oxide composites on single-stranded DNA modified gold electrode for enzymeless H2O2 detection’, J. Mater. Sci., 2011, 46, 5260–5266.
  • ZhengX., GuoD., ShaoY., JiaS., XuS., ZhaoB. and XuW., ‘Photochemical modification of an optical fiber tip with a silver nanoparticle film: A SERS chemical sensor’, Langmuir, 2008, 24, 4394–4398.
  • XuW., XuS., LuZ., ChenL., ZhaoB. and OzakiY., ‘Ultrasensitive detection of 1, 4-Bis(4- vinylpyridyl) phenylene in a small volume of low refractive index liquid by surface–enhanced Raman scattering active light waveguide’, Appl. Spectrosc., 2004, 58, 414–419.
  • GiljohannD. A. and MirkinC. A., ‘Drivers of biodiagnostic development’, Nature, 2009, 462, 461–464.
  • HuangX., JianP. K., El-SayedI. H. and El-SayedM. A., ‘Plasmonic photothermal therapy (PPTT) using gold nanoparticles’, Lasers Med. Sci., 2008, 23, 217–228.
  • HuangX., El-SayedI. H., QianW. and El-SayedM. A., ‘Cancer cell imaging and photothermal therapy in the near-infrared region by using gold nanorods’, J. Am. Chem. Soc., 2006, 128, 2115–2120.
  • El-SayedI. H., HuangX. and El-SayedM. A., ‘Selective laser photo-thermal therapy of epithelial carcinoma using anti-EGFR antibody conjugated gold nanoparticles’, Cancer Lett., 2006, 239, 129–135.
  • TangX. Z., LiX., CaoZ., YangJ., WangH., PuX. and YuZ. Z., ‘Synthesis of graphene decorated with silver nanoparticles by simultaneous reduction of graphene oxide and silver ions with glucose’, Carbon, 2013, 59, 93–99.
  • JungJ. H., CheonD. S., LiuF., LeeK. B. and SeoT. S., ‘A graphene oxide based immuno–biosensor for pathogen detection’Angew. Chem. Int. Ed., 2010, 49, 5708–5711.
  • AnwarA. W., MajeedA., IqbalN., UllahW., ShuaibA., IlyasU., BibiF. and RafiqueH. M.: J. Mater. Sci. Technol., 2015, 31, 699–707.
  • LiD., MullerM. B., GiljeS., KanerR. B. and WallaceG. G., ‘Processable aqueous dispersions of graphene nanosheets’, Nat. Nanotechnol., 2008, 3, 101–105.
  • WilliamsG., SegerB. and KamatP. V., ‘TiO2-graphene nanocomposites: UV-assisted photocatalytic reduction of graphene oxide’, ACS Nano, 2008, 2, 1487–1491.
  • WangG., ShenX., YaoJ. and ParkJ., ‘Graphene nanosheets for enhanced lithium storage in lithium ion batteries’, Carbon, 2009, 47, 2049–2053.
  • BorgneV. L., BaziH., HayashiT., KimY. A., EndoM. and KhakaniM. A. E., ‘Hydrogen-assisted pulsed KrF-laser irradiation for the in situ photoreduction of graphene oxide films’, Carbon, 2014, 77, 857–867.
  • TuY., IchiiT., UtsunomiyaT. and SugimuraH., ‘Vacuum-ultraviolet photoreduction of graphene oxide: Electrical conductivity of entirely reduced single sheets and reduced micro line patterns’, Appl. Phys. Lett., 2015, 106, 133105.
  • YangQ., LiQ., YanZ., HuX., KangL., LeiZ. and LiuZ. H., ‘High performance graphene/manganese oxide hybrid electrode with flexible holey structure’, Electrochim. Acta, 2014, 129, 237–244.
  • KhilariS., PanditS., GhangrekarM. M., DasD. and PradhanD., ‘Graphene supported a-MnO2 nanotubes as cathode catalyst for improved power generation and wastewater treatment in single chambered microbial fuel cells’, RSC Adv., 2013, 3, 7902–7911.
  • ShaoW., LiuX., MinH., DongG., FengQ. and ZuoS., ‘Preparation, characterization and antibacterial activity of silver nanoparticle-decorated graphene oxide nanocomposite’, ACS Appl. Mater. Interfaces, 2015, 7, 6966–6973.
  • WangD., BaoY., ZhaJ. W., ZhaoJ., DangZ. M. and HuG. H., ‘Improved dielectric properties of nanocomposites based on poly(vinylidene fluoride) and poly(vinyl alcohol)-functionalized graphene’, ACS Appl. Mater. Interfaces, 2012, 4, 6273–6279.
  • LiuJ. W., YangT., MaL. Y., ChenX. W. and WangJ. H., ‘Nickel nanoparticle decorated graphene for highly selective isolation of polyhistidine-tagged proteins’, Nanotechnology, 2013, 24, 505704.
  • W. S.HummersJr and OffemanR. E., ‘Preparation of graphitic oxide’, J. Am. Chem. Soc., 1958, 80, 1339–1339.
  • FangM., ChenZ., WangS. and LuH., ‘The deposition of iron and silver nanoparticles in graphene-polyelectrolyte brushes’, Nanotechnology, 2012, 23, 085704.
  • KudinK. N., OzbasB., SchnieppH. C., PrudhommeR. K., AksayI. A. and CarR., ‘Raman spectra of graphite oxide and functionalized graphene sheets’, Nano Lett., 2008, 8, 36–41.
  • YangB., LiuZ., GuoZ., ZhangW., WanM., QinX. and ZhongH., ‘In situ green synthesis of silver-graphene oxide nanocomposites by using tryptophan as a reducing and stabilizing agent and their application in SERS’, Appl. Surf. Sci., 2014, 316, 22–27.
  • FerreiraE. H. M., MoutinhoM. V. O., StavaleF., LuccheseM. M., CapazR. B., AcheteC. A. and JorioA., ‘Evolution of the Raman spectra from single, few and many-layer graphene with increasing disorder’, Phys. Rev. B, 2010, 82B, 125429.
  • HuangH. and YangX., ‘Synthesis of polysaccharide-stabilized gold and silver nanoparticles: A green method’Carbohydr. Res., 2004, 339, 2627–2631.
  • JiangZ., XieJ., JiangD., WeiX. and ChenM., ‘Modifiers-assisted formation of nickel nanoparticles and their catalytic application to p-nitrophenol reduction’, CrystEngComm., 2013, 15, 560–569.
  • HeY. and CuiH., ‘Synthesis of highly chemiluminescent graphene oxide/silver nanoparticle nano-composites and their analytical applications’, J. Mater. Chem., 2012, 22, 9086–9091.
  • JiZ., ShenX., ZhuG., ZhouH. and YuanA., ‘Reduced graphene oxide/nickel nanocomposites: facile synthesis, magnetic and catalytic properties’, J. Mater. Chem., 2012, 22, 3471–3477.

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