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Ordered arrays of semi-crown ligands on an Au(111) electrode surface: in situ STM study
作者姓名:PAN Gebo  LI Huijing  YUAN Qunhui  CHEN Yongjun  WAN Lijun & BAI Chunli Institute of Chemistry  Chinese Academy of Sciences  Beijing  China
作者单位:PAN Gebo,LI Huijing,YUAN Qunhui,CHEN Yongjun,WAN Lijun & BAI Chunli Institute of Chemistry,Chinese Academy of Sciences,Beijing 100080,China
基金项目:国家自然科学基金,中国科学院资助项目
摘    要:Self-organized systems have attracted much at-tention due to their potential applications in nano- technology as a bottom-up?approach for the con-struction of molecule-scale devices and nanostruc-tures1—4]. Beyond the self-assembly of small molecu-lar building blocks, Schnherr et al. recently suc-ceeded in arranging the rosette supramolecular nanos-tructures in two dimensions on HOPG5,6]. Moreover, interest has tremendously increased in the su-pramolecular structures via coordination-dr…


Ordered arrays of semi-crown ligands on an Au(111) electrode surface:in situ STM study
PAN Gebo,LI Huijing,YUAN Qunhui,CHEN Yongjun,WAN Lijun & BAI Chunli Institute of Chemistry,Chinese Academy of Sciences,Beijing ,China.Ordered arrays of semi-crown ligands on an Au(111) electrode surface: in situ STM study[J].Science in China(Chemistry),2004,47(4).
Authors:PAN Gebo  LI Huijing  YUAN Qunhui  Chen Yongjun  WAN Lijun  BAI Chunli
Institution:Institute of Chemistry, Chinese Academy of Sciences, Beijing 100080, China
Abstract:In situ scanning tunneling microscopy (STM) and cyclic voltammetry were employed to investigate the adsorption structures of three semi-crown ligands on an Au(111) surface under the potential control. It is found that all the molecules formed ordered arrays in 0.1 mol/L HClO4 solution, although their geometric structures are complex and asymmetric. The driving force was supposed to come from the balance between intermolecular and molecule-substrate interactions. High resolution STM images revealed internal molecular structures, orientations and packing arrangements in the ordered adlayers. The results are useful for preparing ordered arrays of transition metal-mediated nanostructures.
Keywords:Au(111)  cyclic voltammetry  ordered array  in situ STM  
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