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Epitaxial graphene

C. Riedl, C. Coletti, T. Iwasaki, A.A. Zakharov, U. Starke, Quasi-free-standing epitaxial graphene on SiC obtained by hydrogen intercalation, Physical Review Letters. 103 (2009) 246804. [Pg.41]

S. Goler, C. Coletti, V. Piazza, P. Pingue, F. Colangelo, V. Pellegrini, et al., Revealing the atomic structure of the buffer layer between SiC(OOOl) and epitaxial graphene, Carbon, 51 (2013) 249-254. [Pg.41]

W.A. de Heer, C. Berger, M. Ruan, M. Sprinkle, X. Li, Y. Hu, et al., Large area and structured epitaxial graphene produced by confinement controlled sublimation of silicon carbide, Proceedings of the National Academy of Sciences of the United States of America, 108 (2011) 16900-16905. [Pg.41]

W.A. de Heer, The development of epitaxial graphene for 21st century electronics, arXiv Preprint arXiv 1012.1644. (2010). [Pg.41]

T.J. McArdle, J.O. Chu, Y. Zhu, Z. Liu, M. Krishnan, C.M. Breslin, et al., Multilayer epitaxial graphene formed by pyrolysis of polycrystalline silicon-carbide grown on c-plane sapphire substrates, Applied Physics Letters, 98 (2011) 132108. [Pg.41]

Alaboson, J.M.P., et ah, Seeding atomic layer deposition of high-kdielectrics on epitaxial graphene with organic self-assembled monolayers. ACS Nano, 2011. 5(6) p. 5223-5232. [Pg.170]

Darancet P, Wipf N, Berger C et al (2008) Quenching of the quantum Hall effect in multilayered epitaxial graphene the role of undoped planes. Phys Rev Lett 101 116806... [Pg.170]

Borysiuk J, Bozek R, Strupinski W et al (2010) Graphene growth on C and Si-face of 4 H-SiC - TEM and AFM studies. Mater Sci Forum 645-648 577-580 Berger C, Song Z, Li X et al (2006) Electronic confinement and coherence in patterned epitaxial graphene. Science 312 1191-1196... [Pg.171]

Zhou SY, Gweon GH, Eedorov AV et al (2007) Substrate-induced bandgap opening in epitaxial graphene. Nat Mater 6 770-775... [Pg.172]

Lee DS, Riedl C, Krauss B, von Klitzing K, Starke U, Smet JH (2008) Raman spectra of epitaxial graphene on SiC and of epitaxial graphene transferred to Si02. Nano Lett 8 4320-4325... [Pg.441]

Key words field effect gas sensors, SiC gas sensors, smart sensing, temperature cychng, epitaxial graphene on SiC gas sensors. [Pg.117]

The substrate-induced doping in epitaxial graphene varies shghtly from sample to sample with growth conditions and substrate morphology (Eriksson et al., 2012). This variation in carrier concentration affects the gas concentration at which an n- and p-type transition is observed in few-layer epitaxial graphene devices (Pearce, et al, 2012). [Pg.147]

Epitaxial graphene on SiC field effect transistors as gas sensors... [Pg.148]

Moon, J., Curtis, D., Hu, M., Wong, D., McGuire, C., Campbell, P, Jernigan, G., Tedesco, J., VanMil, B. and Myers-Ward, R. (2009), Epitaxial-graphene RF field-effect transistors on Si-face 6H-SiC substrates. Electron Device Letters, IEEE, 36,650-2. [Pg.155]

Tzalenchuk, A., Lara-Avila, S., Kalaboukhov, A., Paolillo, S., Syvajarvi, M., Yakimova, R., Kazakova, O., Janssen, T. J. B. M., FaPko, V. and Kubatkin, S. (2010), Towards a quantum resistance standard based on epitaxial graphene,... [Pg.157]

Van, C., Kimouche, A., Plantey, A., Fruchart, O., Guillemaud, P, Bendiab, N. and Coraux, J. (2011), Epitaxial graphene prepared by chemical vapor deposition on single crystal thin iridium films on sapphire. Applied Physics Letters, 98, 181903. [Pg.157]

Yakimova, R., Virojanadara, C., Gogova, D., Syvajarvi, M., Siche, D., Larsson, K. and Johansson, L. I. (2010), Analysis of the formation conditions for large area epitaxial graphene on SiC substrates. Materials Science Forum, 645-648,565-8. [Pg.158]

Zhou, S., Gweon, G. H., Fedorov, A., De Heer, W, Lee, D. H., Guinea, R, Neto, A. and Lanzara, A. (2007a), Substrate-induced band gap opening in epitaxial graphene, Arxiv preprint arXiv 0709.1706. [Pg.158]

Fig. 7.14 ExsituHRTEM near the surface of an epitaxial graphene film on a SiC [2 12 0] substrate after cathodic polarization in a Li metal cell, showing the structure of the SiC, the graphene layers, and the solid electrolyte interphase (SEl) with LiF crystals. Fig. 7.14 ExsituHRTEM near the surface of an epitaxial graphene film on a SiC [2 12 0] substrate after cathodic polarization in a Li metal cell, showing the structure of the SiC, the graphene layers, and the solid electrolyte interphase (SEl) with LiF crystals.
Sampsa K. Hamalainen, Mariia Stepanova, Robert Drost. (2012). Self-Assembly of Cobalt-Phthalocyanine Molecules on Epitaxial Graphene on Ir (111). J. Phys. Chem. C, 116, 20433-20437. [Pg.199]


See other pages where Epitaxial graphene is mentioned: [Pg.172]    [Pg.184]    [Pg.81]    [Pg.139]    [Pg.144]    [Pg.145]    [Pg.145]    [Pg.146]    [Pg.147]    [Pg.148]    [Pg.149]    [Pg.149]    [Pg.151]    [Pg.152]    [Pg.152]    [Pg.153]    [Pg.153]    [Pg.155]    [Pg.157]    [Pg.157]    [Pg.158]    [Pg.356]    [Pg.416]    [Pg.161]    [Pg.373]    [Pg.631]    [Pg.24]   
See also in sourсe #XX -- [ Pg.36 ]

See also in sourсe #XX -- [ Pg.36 ]




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