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Verfasst von:Steiner, Christian [VerfasserIn]   i
 Fromm, Lukas [VerfasserIn]   i
 Gebhardt, Julian [VerfasserIn]   i
 Liu, Yi [VerfasserIn]   i
 Heidenreich, Alexander [VerfasserIn]   i
 Hammer, Natalie [VerfasserIn]   i
 Görling, Andreas [VerfasserIn]   i
 Kivala, Milan [VerfasserIn]   i
 Maier, Sabine [VerfasserIn]   i
Titel:Host guest chemistry and supramolecular doping in triphenylamine-based covalent frameworks on Au(111)
Verf.angabe:Christian Steiner, Lukas Fromm, Julian Gebhardt, Yi Liu, Alexander Heidenreich, Natalie Hammer, Andreas Görling, Milan Kivala and Sabine Maier
Jahr:2021
Umfang:10 S.
Fussnoten:First published 11 May 2021 ; Gesehen am 20.09.2022
Titel Quelle:Enthalten in: Nanoscale
Ort Quelle:Cambridge : RSC Publ., 2009
Jahr Quelle:2021
Band/Heft Quelle:13(2021), 21, Seite 9798-9807
ISSN Quelle:2040-3372
Abstract:The post-synthetic modification of covalent organic frameworks (COFs) via host-guest chemistry is an important method to tailor their electronic properties for applications. Due to the limited structural control in the assembly of two-dimensional surface-supported COFs, supramolecular networks are traditionally used at present for host-guest experiments on surfaces, which lack structural and thermal stability, however. Here, we present a combined scanning tunneling microscopy and density functional theory study to understand the host-guest interaction in triphenylamine-based covalently-linked macrocycles and networks on Au(111). These triphenylamine-based structures feature carbonyl and hydrogen functionalized pores that create preferred adsorption sites for trimesic acid (TMA) and halogen atoms. The binding of the TMA through optimized hydrogen-bond interactions is corroborated by selective adsorption positions within the pores. Band structure calculations reveal that the strong intermolecular charge transfer through the TMA bonding reduces the band gap in the triphenylamine COFs, demonstrating the concept of supramolecular doping by host-guest interactions in surface-supported COFs. Halogen atoms selectively adsorb between two carbonyl groups at Au hollow sites. The mainly dispersive interaction of the halogens with the triphenylamine COF leads to a small downshift of the bands. Most of the halogens change their adsorption position selectively upon annealing near the desorption temperature. In conclusion, we demonstrate evidence for supramolecular doping via post-synthetic modification and to track chemical reactions in confined space.
DOI:doi:10.1039/D0NR09140E
URL:Bitte beachten Sie: Dies ist ein Bibliographieeintrag. Ein Volltextzugriff für Mitglieder der Universität besteht hier nur, falls für die entsprechende Zeitschrift/den entsprechenden Sammelband ein Abonnement besteht oder es sich um einen OpenAccess-Titel handelt.

Volltext ; Verlag: https://doi.org/10.1039/D0NR09140E
 Volltext: https://pubs.rsc.org/en/content/articlelanding/2021/nr/d0nr09140e
 DOI: https://doi.org/10.1039/D0NR09140E
Datenträger:Online-Ressource
Sprache:eng
K10plus-PPN:1817016245
Verknüpfungen:→ Zeitschrift

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