RU(0001)

作品数:30被引量:36H指数:4
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相关领域:理学更多>>
相关作者:何丕模李海洋鲍世宁高鸿钧潘毅更多>>
相关机构:浙江大学中国科学院中国科学院大学中国科学技术大学更多>>
相关期刊:《工业催化》《Science Bulletin》《河南师范大学学报(自然科学版)》《物理学报》更多>>
相关基金:国家自然科学基金国家重点基础研究发展计划国家高技术研究发展计划福建省教育厅科技项目更多>>
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High quality sub-monolayer,monolayer,and bilayer graphene on Ru(0001)
《Chinese Physics B》2014年第9期15-18,共4页徐文焱 黄立 阙炎德 李恩 张海刚 林晓 王业亮 杜世萱 高鸿钧 
supported by the National Basic Research Program of China(Grant Nos.2013CBA01600 and 2011CB932700);the National Natural Science Foundation of China(Grant Nos.61222112 and 11334006)
High quality sub-monolayer, monolayer, and bilayer graphene were grown on Ru(0001). For the sub-monolayer graphene, the size of graphene islands with zigzag edges can be controlled by the dose of ethylene exposure. ...
关键词:GRAPHENE Ru(0001) scanning tunneling microscopy 
Template-directed assembly of pentacene molecules on epitaxial graphene on Ru(0001)被引量:4
《Nano Research》2013年第2期131-137,共7页Haitao Zhou Lizhi Zhang Jinhai Mao Geng Li Yi Zhang Yeliang Wang Shixuan Du Werner A. Hofer Hong-Jun Gao 
This work was financially supported by the Ministry of Science and Technology (MOST Nos. 2011CB921702 and 2011CB932700), National Natural Science Foundation of China (NSFC No. 61222112), Multilevel Molecular Assemblies: Structure, Dynamics, and Functions (TRR61), Shanghai Supercomputer Center (SSC), and Chinese Academy of Sciences (CAS) in China. WAH acknowledges support from the UK Car-Parinello consortium, grant No. EP/F037783/1.
The template-directed assembly of planar pentacene molecules on epitaxial graphene grown on Ru(0001) (G/Ru) has been investigated by means of low-temperature scanning tunneling microscopy (STM) and density funct...
关键词:graphene Ru(0001) PENTACENE SELF-ASSEMBLY scanning tunnelingmicroscopy (STM) density functionaltheory (DFT) 
Electronic structures and coronene on Ru(0001): vibrational properties of first-principles study
《Chinese Physics B》2012年第3期335-340,共6页
Project supported by the National Natural Science Foundation of China (Grant No. 10874219), the National Basic Research Program of China (Grant Nos. 2011CB921702 and 2011CB808401), and the Shanghai Supercomputing Center, China.
We calculate the configurations, electronic structures, vibrational properties at the coronene/Ru(0001) interface, and adsorption of a single Pt atom on coronene/Ru(0001) based on density functional theory calcula...
关键词:coronene/Ru(0001) interface surface adsorption phonon calculation first-principles calculation 
Adsorption Site and State of Nitrogen Atom on Ru(0001),(1010) Low-index and (1120),(1121) Stepped Surfaces
《Chemical Research in Chinese Universities》2009年第5期705-710,共6页DIAO Zhao-yu YU Hai-yan WANG Zhong-ni ZHANG Xue-na WANG Ze-xin 
Supported by the Natural Science Foundation of Shandong Province,China(No.Y2006B29)
The adsorptions of nitrogen atoms on Ru(0001), (1010) low index surfaces and (1120), (1121) stepped surfaces were investigated by the five-parameter Morse potential(5-MP) method in details, Calculated result...
关键词:N-Ru system 5-MP Surface adsorption 
Fabrication of metal nanoclusters on graphene grown on Ru(0001)被引量:4
《Chinese Science Bulletin》2009年第14期2446-2450,共5页ZHANG Hui FU Qiang CUI Yi TAN DaLi BAO XinHe 
Supported by the National Natural Science Foundation of China (Grant Nos. 20603037, 20733008 and 20873143);Major State Basic Research Development Program of China (Grant No: 2007CB815205);One Hundred Talents Project of Chinese Academy of Sciences
Monolayer graphene was epitaxially grown on Ru(0001) through exposure of the Ru(0001) to ethylene at room temperature followed by annealing in ultrahigh vacuum at elevated temperatures. The resulting graphene structur...
关键词:石墨结构 RU 纳米 金属 制备 X射线光电子能谱 扫描隧道显微镜 紫外光电子能谱 
Electrooxidation of CO on Ru(0001) and RuO_2(100) Electrode Surfaces
《Chinese Chemical Letters》2002年第11期1135-1137,共3页WeiBoWANG MauSchengZEI  
The electrooxidation of CO on Ru (0001) and RuO2 (100) electrode surfaces were characterized by cyclic voltammetry, AES and RHEED. The CO adlayer was first partially oxidized at 0.8 V, which is controlled by the atta...
关键词:RU(0001) RUO2 CO electrooxidation. 
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