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  • 1
    Online-Ressource
    Online-Ressource
    American Vacuum Society ; 2016
    In:  Journal of Vacuum Science & Technology B, Nanotechnology and Microelectronics: Materials, Processing, Measurement, and Phenomena Vol. 34, No. 1 ( 2016-01-01)
    In: Journal of Vacuum Science & Technology B, Nanotechnology and Microelectronics: Materials, Processing, Measurement, and Phenomena, American Vacuum Society, Vol. 34, No. 1 ( 2016-01-01)
    Kurzfassung: Transferring molecular nanostructures from one surface to another in ultrahigh vacuum (UHV) by mechanical contact might be a possible route to avoid the severe limitations of in situ molecular synthesis on technologically relevant template surfaces. Here, transfer printing in UHV of molecular structures between metal surfaces is investigated by a combination of scanning tunneling microscopy and scanning electron microscopy/energy dispersive x-ray spectroscopy. The authors present the complete procedure of the printing and characterization process. Microstructured Au-coated MoS2 samples exhibiting a periodic pillar structure are used as stamp surfaces with Au(111) single crystals as target surface. Polymers of 1,3,5-tris(4-bromophenyl)benzene molecules and graphene nanoribbons with an armchair edge structure are grown on the pillars of the stamp surface. After bringing the two surfaces in mechanical contact, the transferred material is found on the target while decapping occurs on the stamp surface. Polymer structures are probably buried under the transferred stamp material, and in rare cases, evidence for molecular structures is found in their vicinity.
    Materialart: Online-Ressource
    ISSN: 2166-2746 , 2166-2754
    RVK:
    Sprache: Englisch
    Verlag: American Vacuum Society
    Publikationsdatum: 2016
    ZDB Id: 3117331-7
    ZDB Id: 1475429-0
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
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