Aza-Triangulene: On-Surface Synthesis, Electronic and Magnetic Properties
arXiv:2111.15302 · doi:10.1021/jacs.1c12618
Abstract
Nitrogen heteroatom doping into a triangulene molecule allows tuning its magnetic state. However, the synthesis of the nitrogen-doped triangulene (aza-triangulene) has been challenging. Herein, we report the successful synthesis of aza-triangulene on the Au(111) and Ag(111) surfaces, along with their characterizations by scanning tunneling microscopy and spectroscopy in combination with density functional theory (DFT) calculations. Aza-triangulenes were obtained by reducing ketone-substituted precursors. Exposure to atomic hydrogen followed by thermal annealing and, when necessary, manipulations with the scanning probe, afforded the target product. We demonstrate that on Au(111) aza-triangulene donates an electron to the substrate and exhibits an open-shell triplet ground state. This is derived from the different Kondo resonances of the final aza-triangulene product and a series of intermediates on Au(111). Experimentally mapped molecular orbitals match perfectly with DFT calculated counterparts for a positively charged aza-triangulene. In contrast, aza-triangulene on Ag(111) receives an extra electron from the substrate and displays a closed-shell character. Our study reveals the electronic properties of aza-triangulene on different metal surfaces and offers an efficient approach for the fabrication of new hydrocarbon structures, including reactive open-shell molecules.
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- Addressing electron spins embedded in metallic graphene nanoribbons
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- Theory of triangulene two-dimensional crystals
- Metal-free Stoner and Mott-Hubbard magnetism in 2D polymers with honeycomb lattice
- Conformational tuning of magnetic interactions in coupled nanographenes
- Electrically driven singlet-triplet transition in triangulene spin-1 chains
- On-surface Synthesis of a Ferromagnetic Molecular Spin Trimer
- Spin and Charge Control of Topological End States in Chiral Graphene Nanoribbons on a 2D Ferromagnet
- Synthesis and characterization of a -extended Clar's goblet
- Quantum Spin-1/2 Rings Built from [2]Triangulene Molecular Units
- Graphene-based quantum heterospin graphs