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相关论文: Revealing the atomic structure of the buffer layer…

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The intercalation of epitaxial graphene on SiC(0001) with Ca has been studied extensively, yet precisely where the Ca resides remains elusive. Furthermore, the intercalation of Mg underneath epitaxial graphene on SiC(0001) has not been…

Quasi-free standing epitaxial graphene is obtained on SiC(0001) by hydrogen intercalation. The hydrogen moves between the 6root3 reconstructed initial carbon layer and the SiC substrate. The topmost Si atoms which for epitaxial graphene are…

材料科学 · 物理学 2009-12-11 C. Riedl , C. Coletti , T. Iwasaki , A. A. Zakharov , U. Starke

Using the normal incidence x-ray standing wave technique as well as low energy electron microscopy we have investigated the structure of quasi-freestanding monolayer graphene (QFMLG) obtained by intercalation of antimony under the…

Grazing incidence X-ray diffraction (GID) was employed to probe the structure of atomically thin carbon layers on SiC(0001): a so-called buffer layer (BL) with a $6(\sqrt{3}\times\sqrt{3})$R30$^\circ$ periodicity, a monolayer graphene (MLG)…

Epitaxial graphene, grown on SiC(0001) surface, has been widely studied both experimentally and theoretically. It was found that first epitaxial graphene layer in such structures is a buffer layer i.e. there are no characteristic Dirac…

材料科学 · 物理学 2015-03-13 Jakub Soltys , Jacek Piechota , Michal Lopuszynski , Stanislaw Krukowski

Monolayer graphene epitaxially grown on SiC(0001) was etched by H-plasma and studied by scanning tunneling microscopy and spectroscopy. The etching created partly hexagonal nanopits of monatomic depth as well as elevated regions with a…

介观与纳米尺度物理 · 物理学 2019-07-24 André E. B. Amend , Tomohiro Matsui , Hiroki Hibino , Hiroshi Fukuyama

We present a systematical study via scanning tunneling microscopy (STM) and low-energy electron diffraction (LEED) on the effect of the exposure of Lithium (Li) on graphene on silicon carbide (SiC). We have investigated Li deposition both…

材料科学 · 物理学 2017-09-29 Sara Fiori , Yuya Murata , Stefano Veronesi , Antonio Rossi , Camilla Coletti , Stefan Heun

We propose a table-top method to obtain bilayer quasi-free-standing epitaxial-graphene (QFSEG) on SiC(0001). By applying a microwave annealing in air to a monolayer epitaxial graphene (EG) grown on SiC(0001), the buffer layer is decoupled…

介观与纳米尺度物理 · 物理学 2017-05-19 Kwan-Soo Kim , Goon-Ho Park , Hirokazu Fukidome , Someya Takashi , Iimori Takushi , Komori Fumio , Matsuda Iwao , Maki Suemitsu

Graphene on SiC intercalated with two-dimensional metal layers, such as Pt, offers a versatile platform for applications in spintronics, catalysis, and beyond. Recent studies have demonstrated that Pt atoms can intercalate at the…

材料科学 · 物理学 2025-02-28 Letizia Ferbel , Stefano Veronesi , Antonio Rossi , Stiven Forti , Camilla Coletti , Stefan Heun

Monolayer epitaxial graphene is an appropriate candidate for a wide variety of electronic and optical applications. One advantage of growing graphene on the Si face of SiC is that it develops as a single crystal, as does the layer…

We report on a comparative structural characterization of two types of high quality epitaxial graphene layers grown by CVD on 4H-SiC(0001). The layers under study are a single layer graphene on top of a buffer layer and a…

In this study the growth process of epitaxial graphene on SiC was investigated systematically. The transition from the initial buffer layer growth to the formation of the first monolayer graphene domains was investigated by various…

We report on an investigation of quasi-free-standing graphene on 6H-SiC(0001) which was prepared by intercalation of hydrogen under the buffer layer. Using infrared absorption spectroscopy we prove that the SiC(0001) surface is saturated…

材料科学 · 物理学 2011-10-03 F. Speck , J. Jobst , F. Fromm , M. Ostler , D. Waldmann , M. Hundhausen , H. B. Weber , Th. Seyller

Quasi free standing monolayer graphene (QFMLG) grown on SiC by selective Si evaporation from the Si-rich SiC(0001) face and H intercalation displays irregularities in STM and AFM analysis, appearing as localized features, which we…

介观与纳米尺度物理 · 物理学 2018-04-27 Tommaso Cavallucci , Yuya Murata , Makoto Takamura , Hiroki Hibino , Stefan Heun , Valentina Tozzini

The atomic and electronic structures of a graphene layer on top of the $(2\times2)$ reconstruction of the SiC (000$\bar{1}$) surface are studied from ab initio calculations. At variance with the (0001) face, no C bufferlayer is found here.…

材料科学 · 物理学 2015-05-13 L. Magaud , F. Hiebel , F. Varchon , P. Mallet , J. -Y. Veuillen

We present a comprehensive investigation of the structural and electronic properties of Sn intercalated buffer layers on SiC(0001) using low-temperature scanning tunneling microscopy and spectroscopy (LT-STM/STS), spot-profile analysis…

介观与纳米尺度物理 · 物理学 2025-12-24 Huu Thoai Ngo , Zamin Mamiyev , Niklas Witt , Tim Wehling , Christoph Tegenkamp

In this study, we first show that the argon flow during epitaxial graphene growth is an important parameter to control the quality of the buffer and the graphene layer. Atomic force microscopy (AFM) and low-energy electron diffraction…

Using highly controlled coverages of graphene on SiC(0001), we have studied the structure of the first graphene layer that grows on the SiC interface. This layer, known as the buffer layer, is semiconducting. Using x-ray reflectivity and…

材料科学 · 物理学 2017-11-22 M. Conrad , J. Rault , Y. Utsumi , Y. Garreau , A. Vlad , A. Coati , J. -P. Rueff , P. F. Miceli , E. H. Conrad

We have investigated the structure of hydrogen-intercalated quasi-free-standing monolayer graphene (QFMLG) grown on 6H-SiC(0001) by employing total-reflection high-energy positron diffraction (TRHEPD). At least nine diffraction spots of the…

The buffer layer has been analysed by combined micro-Raman and micro-transmission experiments. The epitaxial graphene growth on the (0001) Si face of 6H-SiC substrates was tuned to get a mixed surface at the early stage of graphitization…

介观与纳米尺度物理 · 物理学 2012-12-07 A. Tiberj , J. R. Huntzinger , N. Camara , P. Godignon , J. Camassel
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