| Literature DB >> 29460993 |
Qiang Sun1, Xin Yu1, Meiling Bao1, Mengxi Liu2, Jinliang Pan2,3, Zeqi Zha2,3, Liangliang Cai1, Honghong Ma1, Chunxue Yuan1, Xiaohui Qiu2,3, Wei Xu1.
Abstract
On-surface synthesis shows significant potential in constructing novel nanostructures/nanomaterials, which has been intensely studied in recent years. The formation of acetylenic scaffolds provides an important route to the fabrication of emerging <span class="Chemical">carbon nanostructures, including carbyne, graphyne, and graphdiyne, which feature chemically vulnerable sp-hybridized carbon atoms. Herein, we designed and synthesized a tribromomethyl-substituted compound. By using a combination of high-resolution scanning tunneling microscopy, non-contact atomic force microscopy, and density functional theory calculations, we demonstrated that it is feasible to convert these compounds directly into C-C triple-bonded structural motifs by on-surface dehalogenative homocoupling reactions. Concurrently, sp3 -hybridized carbon atoms are converted into sp-hybridized ones, that is, an alkyl group is transformed into an alkynyl moiety. Moreover, we achieved the formation of dimer structures, one-dimensional molecular wires, and two-dimensional molecular networks on Au(111) surfaces, which should inspire further studies towards two-dimensional graphyne structures.Entities:
Keywords: alkynes; dehalogenative homocoupling; non-contact atomic force microscopy; scanning tunneling microscopy; surface chemistry
Year: 2018 PMID: 29460993 DOI: 10.1002/anie.201801056
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336