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graphene sheets (FLGS) prepared by an electrochemical method

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graphene sheets (FLGS) prepared by an electrochemical method ( graphene-sheets-flgs-prepared-by-an-electrochemical-method )

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NCPCM 2017 IOP Publishing IOP Conf. Series: Materials Science and Enginee1ri2n3g43536878(920‘1’8“)” 012063 doi:10.1088/1757-899X/338/1/012063 Conclusion: Here a significant synthesis of FLGS was prepared directly from graphite by electrochemical method. From the above characterization, it is clear that the obtained FLGS are better in quality than rGO [13,14].The transitions of graphene sheets under UV irradiation and vacuum has been observed experimentally. From hydrophobic to hydrophilic transition,it can be found that UV irradiation workedlike a switch by means of thedissociative adsorption of H2O on the graphene surface and also concluded that it can be controlled.The obtained result gives a new insights into the elemental principles of water splitting through graphene-based materials. References: 1. NovoselovK. S., GeimA. K., MorozovS. V., JiangD., ZhangY., DubonosS. V., Grigorieva I. V. and FirsovA. A., 2004Science306666–669. 2. Katsnelson M. I. 2007MaterToday10 20–27. 3. ZhangY., TanY. W., StormerH. L. and KimP., 2005Nature438201–204. 4. GiljeS., SongH., WangM., Wang K. L. and KanerR. B., 2007Nano Lett. 7 3394–3398. 5. SchedinF., GeimA. K., MorozovS. V., HillE. W., BlakeP., Katsnelson M. I. and NovoselovK. S., 2007Nat. Mater. 6652–655. 6. BunchJ. S., ZandeA. M., VerbridgeS. S., FrankI. W., TanenbaumD. M., ParpiaJ. M., Craighed H. G. and McEuenP. L.,2007Science315 490–493. 7. WangX., ZhiL. and MullenK., 2008Nano Lett. 8323–327. 8. StankovichS., DikinD. A., DommettG. H. B., KohlhaasK. M., ZimneyE. J., StachE. A., PinerR. D., Nguyen S. T. and RuoffR. S.,2006Nature442 282–286. 9. Takamura T., Endo K., Fu L., Wu Y. P., Lee K. J. and Matsumoto T.,2007Eletrochim.Acta531055–1061. 10. Novoselov K. S., Jiang D., Schedin F., Booth T. J., Khotkevich V. V.,Morozov S. V. and Geim A. K. 2005Proc. Natl. Acad. Sci. U.S.A. 102 10451–10453. 11. BergerC., SongZ., LiT., LiX., OgbazghiA. Y., FengR., DaiZ., MarchenkovA. N., ConradE. H., First P. N. and de HeerW. A.,2004J. Phys. Chem. B108 19912–19916. 12. KimK. S., ZhaoY., JangH., LeeS. Y., KimJ. M., KimK., AhnJ. H., KimP., ChoiJ. Y. and HongB. H., 2009Nature457 706–710. 13. StankovichS., DikinD. A., PinerR. D., KohlhaasK. A.,KleinhammesA., JiaY., WuY., NguyenS. T. and RuoffR. S., 2007Carbon45 1558–1565. 14. BarmanK., MahanandiaP. and NandaK. K., 2013RSC Adv.312621–12624. 15. LiuP. G., GongK. C., XiaoP. and XiaoM., 2000J. Mater. Chem.10933–935. 16. LiuN., LuoF., XuH., LiuY., ZhangC. and ChenJ., 2008Adv. Funct. Mater.18 1518-1525. 17. SuC., LuA., XuY., ChenF., Khlobystov A. N. and LiL., 2011ACS Nano5 2332–2339. 18. Mahanandia P., Simon F.,Heinrich G. and Nanda K.K. 2014 RSC Chem. Commun.504613. 19. Zhang X., Wan S., Pu J., Wang L. and Liu X.,2011J. Mater. Chem.21 12251–12258. 20. Jiang Q. G., Ao Z. M., Chu D. W. and Jiang Q., 2012J. Phys.Chem. C116 19321–19326. 5

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