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  3. On-surface synthesis and interfacial charge redistribution of open-shell [3]triangulene-fused porphyrins on Au(111).
 

On-surface synthesis and interfacial charge redistribution of open-shell [3]triangulene-fused porphyrins on Au(111).

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BORIS DOI
10.48620/98028
Publisher DOI
10.1093/nsr/nwag155
PubMed ID
42022972
Description
The on-surface synthesis of porphyrin-nanographene (Por-NG) hybrids enables systematic control of π-electron magnetism in organic materials, yet the spin behavior of these systems remains difficult to predict because the porphyrin core perturbs the graphene lattice. We report the fabrication and electronic characterization of ZnPors fused with two and four [3]triangulene units (i.e. ZnPorT and ZnPorT , respectively) on Au(111). Rapid thermal annealing maximizes the yield of discrete hybrids by suppressing surface diffusion and unwanted lateral fusion. Scanning tunneling microscopy and spectroscopy, supported by theory, show that both ZnPorT and ZnPorT exhibit diradical character with an antiferromagnetically coupled ground state. The hybrids undergo interfacial charge transfer to the metallic substrate: ZnPorT donates one electron, forming open-shell ZnPorT , while ZnPorT donates two electrons, affording closed-shell ZnPorT . Despite this charge transfer, the multireference character of the frontier orbitals remains in ZnPorT . The results establish an efficient route to complex Por-NG hybrids and clarify how molecular design and interfacial charge transfer shape their magnetic properties, an essential step toward functional magnetic nanoarchitectures.
Date of Publication
2026-04
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Keyword(s)
charge transfer
•
graphene
•
magnetism
•
many-body states
•
scanning tunneling microscopy
Language(s)
en
Contributor(s)
Martínez García, Miguel
Xiang, Feifei
Ortega-Guerrero, Andres
Kumar, Manish
Bassi, Nicolò
Pignedoli, Carlo A
Ruffieux, Pascal
Torres, Tomas
Jelínek, Pavel
Fasel, Roman
Bottari, Giovanni
Additional Credits
Department of Chemistry, Biochemistry and Pharmaceutical Sciences (DCBP)
Series
National Science Review
Publisher
Oxford University Press
ISSN
2053-714X
2095-5138
Access(Rights)
open.access
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