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相关论文: Graphene Growth by Metal Etching on Ru(0001)

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Graphene forms from a relatively dense, tightly-bound C-adatom gas, when elemental C is deposited on or segregates to the Ru(0001) surface. Nonlinearity of the graphene growth rate with C adatom density suggests that growth proceeds by…

材料科学 · 物理学 2010-12-14 E. Loginova , N. C. Bartelt , P. J. Feibelman , K. F. McCarty

We measure the concentration of carbon adatoms on the Ru(0001) surface that are in equilibrium with C atoms in the crystal's bulk by monitoring the electron reflectivity of the surface while imaging. During cooling from high temperature, C…

材料科学 · 物理学 2010-12-14 Kevin F. McCarty , Peter J. Feibelman , Elena Loginova , Norman C. Bartelt

By comparing the growth of Cu thin films on bare and graphene-covered Ru(0001) surfaces, we demonstrate the role of graphene as a surfactant allowing the formation of flat Cu films. Low-energy electron microscopy, X-ray photoemission…

材料科学 · 物理学 2019-03-21 Nicolas Rougemaille , Sergio Vlaic , Lucia Aballe , Michael Foerster , Johann Coraux

Li metal has been deposited on the surface of a Ru(0001) single crystal containing patches of monolayer-thick epitaxial graphene islands. The use of low-energy electron microscopy and diffraction allowed us to {\em in situ} monitor the…

We demonstrate a method for synthesizing large scale single layer graphene by thermal annealing of ruthenium single crystal containing carbon. Low energy electron diffraction indicates the graphene grows to as large as millimeter dimensions…

材料科学 · 物理学 2007-09-19 Y. Pan , N. Jiang , J. T. Sun , D. X. Shi , S. X. Du , Feng Liu , H. -J. Gao

Graphene epitaxially grown on Ru(0001) displays a remarkably ordered pattern of hills and valleys in Scanning Tunneling Microscopy (STM) images. To which extent the observed "ripples" are structural or electronic in origin have been much…

Large-area bilayer graphene (BG) is grown epitaxially on Ru(0001) surface and characterized by low temperature scanning tunneling microscopy. The lattice of the bottom layer of BG is stretched by 1.2%, while strain is absent from the top…

材料科学 · 物理学 2014-06-05 Yande Que , Wende Xiao , Xiangmin Fei , Hui Chen , Li Huang , S. X. Du , H. -J. Gao

The growth of magnesium on ruthenium has been studied by low-energy electron microscopy (LEEM) and scanning tunneling microscopy (STM). In LEEM, a layer-by-layer growth is observed except in the first monolayer, where the completion of the…

材料科学 · 物理学 2013-01-21 Tirma Herranz , Benito Santos , Kevin F. McCarty , Juan de la Figuera

We use low-energy electron microscopy to investigate how graphene is removed from Ru(0001) and Ir(111) by reaction with oxygen. We find two mechanisms on Ru(0001). At short times, oxygen reacts with carbon monomers on the surrounding Ru…

材料科学 · 物理学 2010-12-14 Elena Starodub , Norman C. Bartelt , Kevin F. McCarty

Graphene, a flat monolayer of carbon atoms packed tightly into a two dimensional hexagonal lattice, has unusual electronic properties which have many promising nanoelectronic applications. Recent Low Energy Electron Microscopy (LEEM)…

材料科学 · 物理学 2016-02-05 J H Lloyd-Williams

We use low-energy electron microscopy to investigate how graphene grows on Cu(111). Graphene islands first nucleate at substrate defects such as step bunches and impurities. A considerable fraction of these islands can be rotationally…

材料科学 · 物理学 2011-10-20 S. Nie , J. M. Wofford , N. C. Bartelt , O. D. Dubon , K. F. McCarty

Graphene, a hexagonal sheet of $sp^2$-bonded carbon atoms, has extraordinary properties which hold immense promise for future nanoelectronic applications. Unfortunately, the popular preparation methods of micromechanical cleavage and…

介观与纳米尺度物理 · 物理学 2015-05-20 Andrew Zangwill , Dimitri D. Vvedensky

Atomic resolution high angle annular dark field imaging of suspended, single-layer graphene, onto which the metals Cr, Ti, Pd, Ni, Al and Au atoms had been deposited was carried out in an aberration corrected scanning transmission electron…

介观与纳米尺度物理 · 物理学 2012-08-02 Quentin M. Ramasse , Recep Zan , Ursel Bangert , Danil W. Boukhvalov , Young-Woo Son , Konstantin S. Novoselov

The growth of graphene by catalytic decomposition of ethylene on Cu(111) in an ultra-high vacuum system was investigated with low energy electron diffraction, low energy electron microscopy, and atomic force microscopy. Attempts to form a…

材料科学 · 物理学 2013-07-19 Zachary R. Robinson , Parul Tyagi , Tyler R. Mowll , James B. Hannon , Carl A. Ventrice

Observing the individual building blocks of matter is one of the primary goals of microscopy. The invention of the scanning tunneling microscope [1] revolutionized experimental surface science in that atomic-scale features on a solid-state…

材料科学 · 物理学 2008-08-04 Jannik C. Meyer , C. O. Girit , M. F. Crommie , A. Zettl

Since the advent of graphene ushered the era of two-dimensional materials, many forms of hydrogenated graphene have been reported, exhibiting diverse properties ranging from a tunable band gap to ferromagnetic ordering. Patterned…

We study the formation of epitaxial graphene on Ru(0001) using fast x-ray photoelectron spectroscopy during the growth process. The assignment of different C 1s and Ru 3d core level components and their evolution during the growth process…

We studied the growth of an epitaxial graphene monolayer on Ru(0001). The graphene monolayer covers uniformly the Ru substrate over lateral distances larger than several microns reproducing the structural defects of the Ru substrate. The…

An atomic-scale study utilizing scanning tunneling microscopy (STM) in ultrahigh vacuum (UHV) is performed on large single crystalline graphene grains synthesized on Cu foil by a chemical vapor deposition (CVD) method. After thermal…

介观与纳米尺度物理 · 物理学 2014-09-12 Jifa Tian , Helin Cao , Wei Wu , Qingkai Yu , Nathan P. Guisinger , Yong P. Chen

The growth, atomic structure, and electronic property of trilayer graphene (TLG) on Ru(0001) were studied by low temperature scanning tunneling microscopy and spectroscopy in combined with tight-binding approximation (TBA) calculations. TLG…

材料科学 · 物理学 2026-04-14 Yande Que , Wende Xiao , Hui Chen , Dongfei Wang , Shixuan Du , Hong-Jun Gao
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