HOPG

作品数:88被引量:83H指数:4
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相关机构:中国科学院兰州大学厦门大学北京大学更多>>
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Advances in self-assembly and regulation of aromatic carboxylic acid derivatives at HOPG interface被引量:1
《Chinese Chemical Letters》2020年第1期10-18,共9页Jianqiao Li Xiaoyi Zu Yuxin Qian Wubiao Duan Xunwen Xiao Qingdao Zeng 
supported by the National Basic Research Program of China (No. 2016YFA0200700);the National Natural Science Foundation of China (Nos. 21773041 and 21472029)
Aromatic carboxylic acid self-assembly has been a hot research field for many scientists due to its strong coordination ability and flexible coordination mode.The hydrogen bond formed between aromatic carboxylic acids...
关键词:Aromatic carboxylic acid Self-assembly Molecular templates Host-guest systems PHOTO-ISOMERIZATION Scanning tunneling microscopy(STM) 
Mechanical buckling induced periodic kinking/stripe microstructures in mechanically peeled graphite fla es from HOPG被引量:1
《Acta Mechanica Sinica》2015年第4期494-499,共6页Manrui Ren Ze Liu Quan-shui Zheng Jefferson Zhe Liu 
financia support from NSFC(Grant 10832005);the National Basic Research Program of China(Grant 2007CB936803);the National 863 Project(Grant2008AA03Z302);the support from the engineering faculty of Monash University through seed grant 2014
Mechanical exfoliation is a widely used method to isolate high quality graphene layers from bulk graphite. In our recent experiments, some ordered microstructures, consisting of a periodic alternation of kinks and str...
关键词:HOPG Mechanical exfoliation Periodic microstructures KINKING Mechanical buckling 
Potential and Kinetic Electron Emissions from HOPG Surface Irradiated by Highly Charged Xenon and Neon Ions
《Chinese Physics Letters》2011年第5期96-98,共3页WANG Yu-Yu ZHAO Yong-Tao SUN Jian-Rong LI De-Hui QAYYUM Abdul LI Jin-Yu WANG Ping-Zhi XIAO Guo-Qing 
Supported by the National Natural Science Foundation of China under Grant Nos 10805063 and 10905079;National Basic Research Program of China under Grant No 2010CB832902.
Highly charged^(129)Xe^(q+)(q=10-30)and^(40)Ne^(q+)(q=4-8)ion-induced secondary electron emissions on the surface of highly oriented pyrolytic graphite(HOPG)are reported.The total secondary electron yield is measured ...
关键词:HIGHLY POTENTIAL Electron 
Morphology and Wettability of [Bmim] [PF6] Ionic Liquid on HOPG Substrate
《Chinese Physics Letters》2010年第8期125-128,共4页张福春 沙茂林 任秀平 吴国忠 胡钧 张益 
Supported by the Knowledge Innovation Project of Chinese Academy of Sciences (KJCX2.YW.H06 and KJCX2.YW.M03), the National Natural Science Foundation of China under Grant Nos 10975175 and 90923002, the National Basic Research Program of China under Grant No 2007CB936000, and the Ministry of Health of China (2009ZX10004-301).
We investigate the morphology and wettability of [Bmira][PF6] ionic liquid (IL) on a highly oriented pyrolitic graphite (HOPG) substrate using atomic force microscopy. Thin films, nanometer-sized droplets, and "d...
4-戊氧基肉桂酸在HOPG表面的自组装及光诱导结构转变的STM研究被引量:1
《科学通报》2006年第10期1237-1240,共4页管静 谭忠印 许利苹 李珊珊 杨志勇 万立骏 
国家自然科学基金(批准号:20121301);国家重点基础研究发展规划(批准号:2002CCA03100)资助项目.
利用扫描隧道显微镜(STM)研究了4-戊氧基肉桂酸(AOCA)分子在高定向裂解石墨(HOPG)表面的光诱导结构转变.光反应前,4-戊氧基肉桂酸(AOCA)分子间在氢键作用下,在石墨表面形成稳定的有序自组装单分子层.光反应后变为无序的结构,这是由于二...
关键词:扫描隧道显微镜(STM) 4-戊氧基肉桂酸(AOCA) 自组装 光诱导反应 
DDME分子在石墨(HOPG)表面吸附
《北京大学学报(自然科学版)》2005年第3期429-433,共5页刘锴 杜文峰 季航 赵汝光 
973项目 (0 0 1CB6 10 5 0 4 );基金委重点资助项目 (10 1340 30 )
用扫描隧道显微镜(STM )研究了用真空沉积法在高定向有序石墨(HOPG)上制备的1,1dicyano -2 ,2 - (4 -dimethylaminophenyl)ethylene(DDME)薄膜。DDME在石墨表面形成十分平整的分子柱状堆积二维有序结构。还观察到了随覆盖度降低转变成...
关键词:STM DDME 物理吸附 
Step-Directed Deposition of Au Nanostructures By Electron Beam Evaporation被引量:1
《Journal of Rare Earths》2004年第z2期141-144,共4页Xu Xiangdong Liu Zhihong Wang Yinchuan Liu Zhongfan 
Project supported by the Ministry of Science and Technology of China (2001CB6105) and the National Natural Science Foundation of China (NSFC 599101611982, 29973001)
Au atoms were vaporized by electron beam evaporation, and their subsequent growths on Si (111 ) and highly ordered pyrolytic graphite (HOPG) substrates were studied using atomic force microscopy. Results show that Au ...
关键词:electron beam EVAPORATION HOPG AU controlled growth ultrahigh VACUUM 
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