Wide-gap semiconducting graphene from nitrogen-seeded SiC.

Wang, F; Liu, G; Rothwell, S; Nevius, M; Tejeda, A; Taleb-Ibrahimi, A; Feldman, L C; Cohen, P I et al. · Nano Lett · 2013

basic_science · Level V

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Abstract

All carbon electronics based on graphene have been an elusive goal. For more than a decade, the inability to produce significant band-gaps in this material has prevented the development of graphene electronics. We demonstrate a new approach to produce semiconducting graphene that uses a submonolayer concentration of nitrogen on SiC sufficient to pin epitaxial graphene to the SiC interface as it grows. The resulting buckled graphene opens a band gap greater than 0.7 eV in the otherwise continuous metallic graphene sheet.

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