| Literature DB >> 26651905 |
Li Jiang1, Anthoula C Papageorgiou1, Seung Cheol Oh1, Özge Sağlam1, Joachim Reichert1, David A Duncan1, Yi-Qi Zhang1, Florian Klappenberger1, Yuanyuan Guo1, Francesco Allegretti1, Sandeep More2, Rajesh Bhosale, Aurelio Mateo-Alonso2,3, Johannes V Barth1.
Abstract
We investigated the synthesis of one-dimensional nanostructures via Schiff base (imine) formation on three close-packed coinage metal (Au, Ag, and Cu) surfaces under ultrahigh vacuum conditions. We demonstrate the feasibility of forming pyrene-fused pyrazaacene-based oligomers on the Ag(111) surface by thermal annealing of tetraketone and tetraamine molecules, which were designed to afford cyclocondensation products. Direct visualization by scanning tunneling microscopy of reactants, intermediates, and products with submolecular resolution and the analysis of their statistical distribution in dependence of stoichiometry and annealing temperature together with the inspection of complementary X-ray photoelectron spectroscopy signatures provide unique insight in the reaction mechanism, its limitations, and the role of the supporting substrate. In contrast to the reaction on Ag(111), the reactants desorb from the Au(111) surface before reacting, whereas they decompose on the Cu(111) surface during the relevant thermal treatment.Entities:
Keywords: STM; Schiff base; XPS; cyclocondensation; imine; ultrahigh vacuum
Year: 2015 PMID: 26651905 DOI: 10.1021/acsnano.5b06340
Source DB: PubMed Journal: ACS Nano ISSN: 1936-0851 Impact factor: 15.881