On-Surface Synthesis and Characterization of Acene-Based Nanoribbons Incorporating Four-Membered Rings
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Titre | On-Surface Synthesis and Characterization of Acene-Based Nanoribbons Incorporating Four-Membered Rings |
Type de publication | Journal Article |
Year of Publication | 2019 |
Auteurs | Sanchez-Sanchez C, Dienel T, Nicolai A, Kharche N, Liang L, Daniels C, Meunier V, Liu J, Feng X, Muellen K, Sanchez-Valencia JRamon, Groening O, Ruffieux P, Fasel R |
Journal | CHEMISTRY-A EUROPEAN JOURNAL |
Volume | 25 |
Pagination | 12074-12082 |
Date Published | SEP 18 |
Type of Article | Article |
ISSN | 0947-6539 |
Mots-clés | acene, cycloaddition, Nanoribbons, on-surface chemistry, zigzag |
Résumé | A bottom up method for the synthesis of unique tetracene-based nanoribbons, which incorporate cyclobutadiene moieties as linkers between the acene segments, is reported. These structures were achieved through the formal [2+2] cycloaddition reaction of ortho-functionalized tetracene precursor monomers. The formation mechanism and the electronic and magnetic properties of these nanoribbons were comprehensively studied by means of a multitechnique approach. Ultra-high vacuum scanning tunneling microscopy showed the occurrence of metal-coordinated nanostructures at room temperature and their evolution into nanoribbons through formal [2+2] cycloaddition at 475 K. Frequency-shift non-contact atomic force microscopy images clearly proved the presence of bridging cyclobutadiene moieties upon covalent coupling of activated tetracene molecules. Insight into the electronic and vibrational properties of the so-formed ribbons was obtained by scanning tunneling microscopy, Raman spectroscopy, and theoretical calculations. Magnetic properties were addressed from a computational point of view, allowing us to propose promising candidates to magnetic acene-based ribbons incorporating four-membered rings. The reported findings will increase the understanding and availability of new graphene-based nanoribbons with high potential in future spintronics. |
DOI | 10.1002/chem.201901410, Early Access Date = {JUL 2019 |