Controlled thermodynamics for tunable electron doping of graphene on Ir(111)

被引:10
|
作者
Struzzi, C. [1 ,2 ]
Praveen, C. S. [3 ,4 ]
Scardamaglia, M. [2 ]
Verbitskiy, N. I. [5 ,6 ]
Fedorov, A. V. [7 ,8 ,9 ]
Weinl, M. [10 ]
Schreck, M. [10 ]
Grueneis, A. [7 ]
Piccinin, S. [3 ,4 ]
Fabris, S. [3 ,4 ]
Petaccia, L. [1 ]
机构
[1] Elettra Sincrotrone Trieste, Str Statale 14 Km 163-5, I-34149 Trieste, Italy
[2] Univ Mons, Chim Interact Plasma Surface ChIPS, B-7000 Mons, Belgium
[3] CNR, Ist Officina Mat IOM DEMOCRITOS, Via Bonomea 265, I-34136 Trieste, Italy
[4] SISSA, Via Bonomea 265, I-34136 Trieste, Italy
[5] Univ Vienna, Fac Phys, Strudlhofgasse 4, A-1090 Vienna, Austria
[6] Moscow MV Lomonosov State Univ, Dept Mat Sci, Leniskie Gory 1-3, Moscow 119991, Russia
[7] Univ Cologne, Phys Inst 2, Zulpicher Str 77, D-50937 Cologne, Germany
[8] IFW Dresden, Inst Solid State Res, POB 270116, D-01171 Dresden, Germany
[9] St Petersburg State Univ, St Petersburg 198504, Russia
[10] Univ Augsburg, Inst Phys, D-86135 Augsburg, Germany
基金
奥地利科学基金会; 俄罗斯科学基金会; 欧洲研究理事会;
关键词
POTASSIUM; GRAPHITE; INTERCALATION; ADSORPTION; SURFACE;
D O I
10.1103/PhysRevB.94.085427
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The electronic properties and surface structures of K-doped graphene supported on Ir(111) are characterized as a function of temperature and coverage by combining low-energy electron diffraction, angle-resolved photoemission spectroscopy, and density functional theory (DFT) calculations. Deposition of K on graphene at room temperature (RT) yields a stable (root 3 x root 3) R30 degrees surface structure having an intrinsic electron doping that shifts the graphene Dirac point by E-D = 1.30 eV below the Fermi level. Keeping the graphene substrate at 80 K during deposition generates instead a (2 x 2) phase, which is stable until full monolayer coverage. Further deposition of K followed by RT annealing develops a double-layer K-doped graphene that effectively doubles the K coverage and the related charge transfer, as well as maximizing the doping level (E-D = 1.61 eV). The measured electron doping and the surface reconstructions are rationalized by DFT calculations. These indicate a large thermodynamic driving force for K intercalation below the graphene layer. The electron doping and Dirac point shifts calculated for the different structures are in agreement with the experimental measurements. In particular, the K-4s bands are shown to be sensitive to both the K intercalation and periodicity and are therefore suggested as a fingerprint for the location and ordering of the K dopants.
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页数:10
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