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Research Article

Patterning Nanoroads and Quantum Dots on Fluorinated Graphene

Morgana A. Ribas1Abhishek K. Singh1,2Pavel B. Sorokin1Boris I. Yakobson1( )
Department of Mechanical Engineering and Materials Science and Department of ChemistryRice University, HoustonTexas77005USA
Materials Research CentreIndian Institute of ScienceBangalore560012India
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Abstract

Using ab initio methods we have investigated the fluorination of graphene and find that different stoichiometric phases can be formed without a nucleation barrier, with the complete "2D-Teflon" CF phase being thermody-namically most stable. The fluorinated graphene is an insulator and turns out to be a perfect matrix-host for patterning nanoroads and quantum dots of pristine graphene. The electronic and magnetic properties of the nanoroads can be tuned by varying the edge orientation and width. The energy gaps between the highest occupied and lowest unoccupied molecular orbitals (HOMO-LUMO) of quantum dots are size-dependent and show a confinement typical of Dirac fermions. Furthermore, we study the effect of different basic coverage of F on graphene (with stoichiometries CF and C4F) on the band gaps, and show the suitability of these materials to host quantum dots of graphene with unique electronic properties.

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Nano Research
Pages 143-152

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Cite this article:
Ribas MA, Singh AK, Sorokin PB, et al. Patterning Nanoroads and Quantum Dots on Fluorinated Graphene. Nano Research, 2011, 4(1): 143-152. https://doi.org/10.1007/s12274-010-0084-7

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Received: 21 October 2010
Revised: 18 November 2010
Accepted: 19 November 2010
Published: 14 December 2010
© Tsinghua University Press and Springer-Verlag Berlin Heidelberg 2010