Abstract
We have studied the electronic characteristics of covalently functionalized graphene by nitrene chemistry using first-principles density functional calculations. The perfluorophenylazide functionalization leads to a band-gap opening in graphene and transition from a semimetallic to a semiconducting state. The [2 + 1] cycloaddition-induced gap is shown to be attributed to the modification of the π conjugation that depends on the concentration of aziridine adducts. The implications of tailoring the band structure of functionalized graphene for future graphene-based device applications are discussed. © 2011 American Chemical Society.
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CITATION STYLE
Suggs, K., Reuven, D., & Wang, X. Q. (2011). Electronic properties of cycloaddition-functionalized graphene. Journal of Physical Chemistry C, 115(8), 3313–3317. https://doi.org/10.1021/jp111637b
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