Articles producció científica> Química Analítica i Química Orgànica

On-Surface Synthesis and Determination of the Open-Shell Singlet Ground State of Tridecacene

  • Identification data

    Identifier: imarina:9366580
    Authors:
    Zuzak, RKumar, MStoica, OSoler-Polo, DBrabec, JPernal, KVeis, LBlieck, REchavarren, AMJelinek, PGodlewski, S
    Abstract:
    The character of the electronic structure of acenes has been the subject of longstanding discussion. However, convincing experimental evidence of their open-shell character has so far been missing. Here, we present the on-surface synthesis of tridecacene molecules by thermal annealing of octahydrotridecacene on a Au(111) surface. We characterized the electronic structure of the tridecacene by scanning probe microscopy, which reveals the presence of an inelastic signal at 126 meV. We attribute the inelastic signal to spin excitation from the singlet diradical ground state to the triplet excited state. To rationalize the experimental findings, we carried out many-body ab initio calculations as well as model Hamiltonians to take into account the effect of the metallic substrate. Moreover, we provide a detailed analysis of how the dynamic electron correlation and virtual charge fluctuation between the molecule and metallic surface reduces the singlet-triplet band gap. Thus, this work provides the first experimental confirmation of the magnetic character of tridecacene. Tridecacenes were synthesized on Au(111) and their properties were characterized by combined scanning tunneling spectroscopy, inelastic electron tunneling spectroscopy, and state-of-the-art many body calculations. The study confirmed the open-shell diradical character and demonstrated that the magnitude of the singlet-triplet band gap is affected by the proximity of the surface as well as a dynamic electron correlation.**+image
  • Others:

    Author, as appears in the article.: Zuzak, R; Kumar, M; Stoica, O; Soler-Polo, D; Brabec, J; Pernal, K; Veis, L; Blieck, R; Echavarren, AM; Jelinek, P; Godlewski, S
    Department: Química Analítica i Química Orgànica
    URV's Author/s: ECHAVARREN PABLOS, ANTONIO / Stoica, Otilia-Violeta
    Keywords: Photogeneration Open-shell compounds Many-body calculations Inelastic excitation Higher acenes Heptacene Energy Diradicals Acenes
    Abstract: The character of the electronic structure of acenes has been the subject of longstanding discussion. However, convincing experimental evidence of their open-shell character has so far been missing. Here, we present the on-surface synthesis of tridecacene molecules by thermal annealing of octahydrotridecacene on a Au(111) surface. We characterized the electronic structure of the tridecacene by scanning probe microscopy, which reveals the presence of an inelastic signal at 126 meV. We attribute the inelastic signal to spin excitation from the singlet diradical ground state to the triplet excited state. To rationalize the experimental findings, we carried out many-body ab initio calculations as well as model Hamiltonians to take into account the effect of the metallic substrate. Moreover, we provide a detailed analysis of how the dynamic electron correlation and virtual charge fluctuation between the molecule and metallic surface reduces the singlet-triplet band gap. Thus, this work provides the first experimental confirmation of the magnetic character of tridecacene. Tridecacenes were synthesized on Au(111) and their properties were characterized by combined scanning tunneling spectroscopy, inelastic electron tunneling spectroscopy, and state-of-the-art many body calculations. The study confirmed the open-shell diradical character and demonstrated that the magnitude of the singlet-triplet band gap is affected by the proximity of the surface as well as a dynamic electron correlation.**+image
    Thematic Areas: Química Medicina ii Medicina i Materiais Interdisciplinar General medicine General chemistry Farmacia Engenharias ii Ciências biológicas iii Ciências biológicas ii Ciências biológicas i Chemistry, multidisciplinary Chemistry (miscellaneous) Chemistry (all) Chemistry Catalysis Astronomia / física
    licence for use: https://creativecommons.org/licenses/by/3.0/es/
    Author's mail: antoniomaria.echavarren@urv.cat
    Author identifier: 0000-0002-6418-7930
    Record's date: 2024-08-03
    Papper version: info:eu-repo/semantics/submittedVersion
    Link to the original source: https://onlinelibrary.wiley.com/doi/10.1002/anie.202317091
    Licence document URL: https://repositori.urv.cat/ca/proteccio-de-dades/
    Papper original source: Angewandte Chemie (International Ed. Print). 63 (9):
    APA: Zuzak, R; Kumar, M; Stoica, O; Soler-Polo, D; Brabec, J; Pernal, K; Veis, L; Blieck, R; Echavarren, AM; Jelinek, P; Godlewski, S (2024). On-Surface Synthesis and Determination of the Open-Shell Singlet Ground State of Tridecacene. Angewandte Chemie (International Ed. Print), 63(9), -. DOI: 10.1002/anie.202317091
    Article's DOI: 10.1002/anie.202317091
    Entity: Universitat Rovira i Virgili
    Journal publication year: 2024
    Publication Type: Journal Publications
  • Keywords:

    Catalysis,Chemistry,Chemistry (Miscellaneous),Chemistry, Multidisciplinary
    Photogeneration
    Open-shell compounds
    Many-body calculations
    Inelastic excitation
    Higher acenes
    Heptacene
    Energy
    Diradicals
    Acenes
    Química
    Medicina ii
    Medicina i
    Materiais
    Interdisciplinar
    General medicine
    General chemistry
    Farmacia
    Engenharias ii
    Ciências biológicas iii
    Ciências biológicas ii
    Ciências biológicas i
    Chemistry, multidisciplinary
    Chemistry (miscellaneous)
    Chemistry (all)
    Chemistry
    Catalysis
    Astronomia / física
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