| Literature DB >> 30086235 |
Shigeki Kawai1, Ondrěj Krejčí2, Adam S Foster2,3,4, Rémy Pawlak5, Feng Xu6, Lifen Peng6, Akihiro Orita6, Ernst Meyer5.
Abstract
On-surface chemical reaction has become a very powerful technique to conjugate small precursor molecules and several reactions have been proposed with the aim to fabricate functional nanostructures on surfaces. Here we present an unforeseen adsorption mode of 9,10-bis((trimethylsilyl)ethynyl)anthracene on a Cu(111)surface and the resulting one-shot desilylative homocoupling of of the adsorbate by annealing at 400 K. With a combination of high-resolution atomic force microscopy and density functional theory calculations, we found that the triple bonds and silicon atoms of the monomer chemically interact with the copper surface. After the oligomerization, we discovered that the anthracene units are linked to each other via buta-1,3-diynediyl fragments while keeping the surface clean. Furthermore, the force measurement revealed the chemical nature at the center of anthracene unit.Entities:
Keywords: Glaser coupling; anthracene; atomic force microscopy; on-surface chemical reaction; trimethylsilyl
Year: 2018 PMID: 30086235 DOI: 10.1021/acsnano.8b05116
Source DB: PubMed Journal: ACS Nano ISSN: 1936-0851 Impact factor: 15.881