| Literature DB >> 25990647 |
Jing Liu, Qiwei Chen, Lianghong Xiao, Jian Shang, Xiong Zhou, Yajie Zhang, Yongfeng Wang, Xiang Shao1, Jianlong Li, Wei Chen2,3, Guo Qin Xu2,3, Hao Tang4, Dahui Zhao, Kai Wu3.
Abstract
Surface reactions of 2,5-diethynyl-1,4-bis(phenylethynyl)benzene on Ag(111), Ag(110), and Ag(100) were systematically explored and scrutinized by scanning tunneling microscopy, molecular mechanics simulations, and density functional theory calculations. On Ag(111), Glaser coupling reaction became dominant, yielding one-dimensional molecular wires formed by covalent bonds. On Ag(110) and Ag(100), however, the terminal alkynes reacted with surface metal atoms, leading to one-dimensional organometallic nanostructures. Detailed experimental and theoretical analyses revealed that such a lattice dependence of the terminal alkyne reaction at surfaces originated from the matching degree between the periodicities of the produced molecular wires and the substrate lattice structures.Entities:
Keywords: Ag single crystals; lattice match; molecular wires; surface reaction; terminal alkynes
Year: 2015 PMID: 25990647 DOI: 10.1021/acsnano.5b01803
Source DB: PubMed Journal: ACS Nano ISSN: 1936-0851 Impact factor: 15.881