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An Introduction to Graphene

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An Introduction to Graphene ( an-introduction-graphene )

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18 1 An Introduction to Graphene water molecules between the oxidized graphene layers. The width of the strongest diffraction peak can also be used to verify the degree of exfoliation as it is linked to the coherently diffracting domain size via the Debye–Scherrer equation. When graphite oxide is completely exfoliated this diffraction peak disappears [91]. References 1. Boehm, H.P., Setton, R., and Stumpp, E. (1994) Pure Appl. Chem., 66, 1893. 2. Chung, D.D.L. (2002) J. Mater. Sci., 37, 1475. 3. Schafheutl, C. (1840) Philos. Mag., 16, 570. 4. Brodie, B.C. (1859) Philos. Trans. R. Soc. London, 149, 249. 5. Staudenmaier, L. (1898) Ber. Dtsch. Chem. Ges., 31, 1481. 6. Hummers, W.S. and Offeman, R.E. (1958) J. Am. Chem. Soc., 80, 1339. 7. Bourlinos, A.B., Gournis, D., Petridis, D., Szabo, T., Szeri, A., and Dekany, I. (2003) Langmuir, 19, 6050. 8. Allen, M.J., Tung, V.C., and Kaner, R.B. (2010) Chem. Rev., 110, 132. 9. Prezhdo, O.V. (2011) Surf. Sci., 605, 1607. 10. Novoselov, K.S., Geim, A.K., Morozov, S.V., Jiang, D., Zhang, Y., Dubonos, S.V., Grigorieva, I.V., and Firsov, A.A. (2004) Science, 306, 666. 11. Meyer, J.C., Geim, A.K., Katsnelson, M.I., Novoselov, K.S., Booth, T.J., and Roth, S. (2007) Nature, 446, 60–63. 12. Castro, N., Guinea, F., Peres, N.M.R., Novoselov, K.S., and Geim, A.K. (2009) Rev. Mod. Phys., 81, 109. 13. Frank, I.W., Tanenbaum, D.M., van der Zande, A.M., and McEuen, P.L.J. (2007) Vac. Sci. Technol., 25, 2558–2561. 14. Boehm, H.P., Clauss, A., Fischer, G., and Hofmann, U. (1962) Proceedings of the Fifth Conference on Carbon, Perga- mon Press, London, p. 73. 15. Boehm, H.P., Clauss, A., Fischer, G.O., and Hofmann, U. (1962) Z. Naturforsch., 17, 150. 16. Lerf, A., He, H., Forster, M., and Klinowski, J. (1998) J. Phys. Chem. B, 102, 4477 – 4482. 17. Szabo, T. et al. (2006) Chem. Mater., 18, 2740 – 2749. 18. Gao, W., Alemany, L.B., Ci, L., and Ajayan, P.M. (2009) Nat. Chem., 1, 403. 19. Stankovich, S., Dikin, D.A., Dommett, G.H.B., Kohlhaas, K.M., Zimney, E.J., Stach, E.A., Piner, R.D., Nguyen, S.T., and Ruoff, R.S. (2006) Nature, 442, 282. 20. Stankovich, S., Dikin, D.A., Piner, R.D., Kohlhaas, K.A., Kleinhammes, A., Jia, Y., Wu, Y., Nguyen, S.T., and Ruoff, R.S. (2007) Carbon, 45, 1558. 21. Boukhvalov, D.W. and Katsnelson, M.I. (2008) J. Am. Chem. Soc., 130, 10697 – 10701. 22. Song, M. and Cai, D. (2012) in Polymer–Graphene Nanocomposites, RSC Nanoscience and Nanotechnology, vol. 26 (ed. V. Mittal), The Royal Society of Chemistry, pp. 1–52. 23. Dreyer, D.R., Murali, S., Zhu, Y., Ruoff, R.S., and Bielawski, C.W. (2011) J. Mater. Chem., 21, 3443. 24. Fan, X., Peng, W., Li, Y., Li, X., Wang, S., Zhang, G., and Zhang, F. (2008) Adv. Mater., 20, 4490. 25. Shin, H.J., Kim, K.K., Benayad, A., Yoon, S.M., Park, H.K., Jung, I.S., Jin, M.H., Jeong, H.K., Kim, J.M., Choi, J.Y., and Lee, Y.H. (2009) Adv. Funct. Mater., 19, 1987. 26. Fernandez-Merino, M.J., Guardia, L., Paredes, J.I., Villar-Rodil, S., Solζs-Fernandez, P., Martζnez-Alonso, A., and Tascon, J.M.D. (2010) J. Phys. Chem. C, 114, 6426. 27. Pei, S., Zhao, J., Du, J., Ren, W., and Cheng, H.M. (2010) Carbon, 48, 4466. 28. Moon, I.K., Lee, J., Ruoff, R.S., and Lee, H. (2010) Nat. Commun., 1, 73. 29. Chen, W., Yan, L., and Bangal, P.R. (2010) J. Phys. Chem. C, 114, 19885. 30. Liu, S., Tian, J., Wang, L., and Sun, X. (2011) Carbon, 49, 3158. 31. Zhou, X., Zhang, J., Wu, H., Yang, H., Zhang, J., and Guo, S. (2011) J. Phys. Chem. C, 115, 11957.

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