High-throughput solution processing of large-scale graphene (original) (raw)
References
Castro Neto, A. H., Guinea, F., Peres, N. M. R., Novoselov, K. S. & Geim, A. K. The electronic properties of graphene. Available at http://arxiv.org/abs/0709.1163 (2007).
Bunch, J. S. et al. Electromechanical resonators from graphene sheets. Science315, 490–493 (2007). Article Google Scholar
Staley, N. et al. Lithography-free fabrication of graphene devices. Appl. Phys. Lett.90, 143518 (2007). Article Google Scholar
Viculis, L. M., Mack, J. J. & Kaner, R. B. A chemical route to carbon nanoscrolls. Science299, 1361 (2003). Article Google Scholar
Shioyama, H. & Akita, T. A new route to carbon nanotubes. Carbon41, 179–181 (2003). Article Google Scholar
Gilje, S., Han, S., Wang, M. S., Wang, K. L. & Kaner, R. B. A chemical route to graphene for device applications. Nano Lett.7, 3394–3398 (2007). Article Google Scholar
Berger, C. et al. Ultrathin epitaxial graphite: 2D electron gas properties and a route toward graphene-based nanoelectronics. J. Phys. Chem. B108, 19912–19916 (2004). Article Google Scholar
Berger, C. et al. Electronic confinement and coherence in patterned epitaxial graphene. Science312, 1191–1196 (2006). Article Google Scholar
Novoselov, K. S. et al. Two-dimensional atomic crystals. Proc. Natl Acad. Sci. USA102, 10451–10453 (2005). Article Google Scholar
Castro, A., Guinea, F. & Peres, N. M. Drawing conclusions from grapheme. Phys. World, 33–37 (November 2006).
Ohta, T., Bostwick, A., Seyller, T., Horn, K. & Rotenberg, E. Controlling the electronic structure of bilayer graphene. Science313, 951–954 (2006). Article Google Scholar
Stankovich, S., Piner, R. D., Nguyen, S. T. & Ruoff, R. S. Synthesis and exfoliation of isocyanate-treated graphene oxide nanoplatelets. Carbon44, 3342–3347 (2006). Article Google Scholar
Stankovich, S. et al. Synthesis of graphene-based nanosheets via chemical reduction of exfoliated graphite oxide. Carbon45, 1558–1565 (2007). Article Google Scholar
Gomez-Navarro, C. et al. Electronic transport properties of individual chemically reduced graphene oxide sheets. Nano Lett.7, 3499–3503 (2007). Article Google Scholar
Hummers, W. S. Jr & Offeman, R. E. Preparation of graphitic oxide. J. Am. Chem. Soc.80, 1339 (1958). Article Google Scholar
Li, D., Mueller, M. B., Gilje, S., Kaner, R. B. & Wallace, G. G. Processable aqueous dispersion of graphene nanosheets. Nature Nanotech.3, 101–105 (2008). Article Google Scholar
Stankovich, S. et al. Stable aqueous dispersions of graphitic nanoplatelets via the reduction of exfoliated graphite oxide in the presence of poly(sodium 4-styrenesulfonate). J. Mater. Chem.16, 155–158 (2006). Article Google Scholar
Liu, P. & Gong, K. Synthesis of polyaniline-intercalated graphite oxide by an in situ oxidative polymerization reaction. Carbon37, 706–707 (1999). Article Google Scholar
Bourlinos, A. B. et al. Graphite oxide: chemical reduction to graphite and surface modification with primary aliphatic amines and amino acids. Langmuir19, 6050–6055 (2003). Article Google Scholar
Mitzi, B. D., Copel, M. & Chey, S. J. Low-voltage transistor employing a high-mobility spin-coated chalcogenide semiconductor. Adv Mater.17, 1289–1293 (2005). Article Google Scholar
Wang, X., Zhi, L. & Müllen, K. Transparent, conductive graphene electrodes for dye-sensitized solar cells. Nano Lett.8, 323–327 (2008). Article Google Scholar
Schniepp, C. H. et al. Functionalized single graphene sheets derived from splitting graphite oxide. J. Phys. Chem. B110, 8535–8539 (2006). Article Google Scholar
Ishigami, M., Chen, J. H., Cullen, W. G., Fuhrer, M. S. & Williams, E. D. Atomic structure of graphene on SiO2 . Nano Lett.7, 1643–1648 (2007). Article Google Scholar
Moser, J., Barreiro, A. & Bachtold, A. Current-induced cleaning of graphene. Appl. Phys. Lett.91, 163513 (2007). Article Google Scholar
Eda, G., Fanchini, G. & Chhowalla, M. Large-area ultrathin films of reduced graphene oxide as a transparent and flexible electronic material. Nature Nanotech.3, 270–274 (2008). Article Google Scholar
Li, X., Wang, X., Zhang, L., Lee, S. & Dai, H. Chemically derived, ultrasmooth graphene nanoribbon semiconductors. Science319, 1229–1232 (2008). Article Google Scholar
Li, X . et al. Highly conducting graphene sheets and Langmuir–Blodgett films. Nature Nanotech.3, 538–542 (2008). Article Google Scholar
Ferrari, A. C. et al. Raman spectrum of graphene and graphene layers. Phys. Rev. Lett.97, 187401 (2006). Article Google Scholar
Graf, D. et al. Spatially resolved Raman spectroscopy of single- and few-layer graphene. Nano Lett.7, 238–242 (2007). Article Google Scholar
Calizo, I., Balandin, A., Bao, W., Miao, F. & Lau, C. N. Temperature dependence of the Raman spectra of graphene and graphene multilayers. Nano Lett.7, 2645–2649 (2007). Article Google Scholar