| Literature DB >> 24635686 |
Thomas Hardisty Bointon1, Ivan Khrapach, Rositza Yakimova, Andrey V Shytov, Monica F Craciun, Saverio Russo.
Abstract
We show the successful intercalation of large area (1 cm(2)) epitaxial few-layer graphene grown on 4H-SiC with FeCl3. Upon intercalation the resistivity of this system drops from an average value of ∼200 Ω/sq to ∼16 Ω/sq at room temperature. The magneto-conductance shows a weak localization feature with a temperature dependence typical of graphene Dirac fermions demonstrating the decoupling into parallel hole gases of each carbon layer composing the FeCl3 intercalated structure. The phase coherence length (∼1.2 μm at 280 mK) decreases rapidly only for temperatures higher than the 2D magnetic ordering in the intercalant layer while it tends to saturate for temperatures lower than the antiferromagnetic ordering between the planes of FeCl3 molecules providing the first evidence for magnetic ordering in the extreme two-dimensional limit of graphene.Entities:
Year: 2014 PMID: 24635686 DOI: 10.1021/nl4040779
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189