Issue 3, 2021

Synthesis and characterization of [7]triangulene

Abstract

Triangulene and its π-extended homologues constitute non-Kekulé polyradical frameworks with high-spin ground states, and are anticipated to be key components of organic spintronic devices. We report a combined in-solution and on-surface synthesis of the hitherto largest triangulene homologue, [7]triangulene (C78H24), consisting of twenty-eight benzenoid rings fused in a triangular fashion. We employ low-temperature scanning tunneling microscopy to confirm the chemical structure of individual molecules adsorbed on a Cu(111) surface. While neutral [7]triangulene in the gas phase is predicted to have an open-shell septet ground state; our scanning tunneling spectroscopy measurements, in combination with density functional theory calculations, reveal chemisorption of [7]triangulene on Cu(111) together with considerable charge transfer, resulting in a closed-shell state. Furthermore, substantial hybridization between the molecular orbitals of [7]triangulene is observed.

Graphical abstract: Synthesis and characterization of [7]triangulene

Supplementary files

Article information

Article type
Communication
Submitted
17 Nov 2020
Accepted
07 Jan 2021
First published
07 Jan 2021

Nanoscale, 2021,13, 1624-1628

Author version available

Synthesis and characterization of [7]triangulene

S. Mishra, K. Xu, K. Eimre, H. Komber, J. Ma, C. A. Pignedoli, R. Fasel, X. Feng and P. Ruffieux, Nanoscale, 2021, 13, 1624 DOI: 10.1039/D0NR08181G

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