arXiv · 2505.03289
Synthesis and characterization of a $\pi$-extended Clar's goblet
Abstract
Concealed non-Kekul\'e polybenzenoid hydrocarbons have no sublattice imbalance yet cannot be assigned a classical Kekul\'e structure, leading to an open-shell ground state with potential application in organic spintronics. They constitute an exceedingly small fraction of the total number of polybenzenoid hydrocarbons that can be constructed for a given number of benzenoid rings, and their synthesis remains challenging. The archetype of such a system is Clar's goblet (C$_{38}$H$_{18}$), a diradical proposed by Erich Clar in 1972 and recently synthesized on a Au(111) surface. Here, we report the synthesis of a pi-extended Clar's goblet (C$_{76}$H$_{26}$), a tetraradical concealed non-Kekul\'e polybenzenoid hydrocarbon, by a combined in-solution and on-surface synthetic approach. By means of low-temperature scanning tunneling microscopy and atomic force microscopy, we characterized individual molecules adsorbed on a Cu(111) surface. We provide insights into the electronic properties of this elusive molecule, including the many-body nature of its ground and excited states, by mean-field and multiconfigurational quantum chemistry calculations.
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Shantanu Mishra, Manuel Vilas-Varela, Igor Rončević, Fabian Paschke, Florian Albrecht, Leo Gross, Diego Peña. 2025-05-06. Synthesis and characterization of a $\pi$-extended Clar's goblet. https://doi.org/10.1021/jacs.5c07588
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