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Updated: Jun 10, 2025

Spatial Separation of Molecular Conformers and Clusters
Published on: January 9, 2014
Single-Molecule Conductance of Neutral Closed-Shell and Open-Shell Diradical Indenofluorenes
Raquel Casares1, Sandra Rodríguez-González2, Álvaro Martínez-Pinel1
1Departamento de Química Orgánica, Unidad de Excelencia de Química Aplicada a Biomedicina y Medioambiente (UEQ), C. U. Fuentenueva, Universidad de Granada, Granada 18071, Spain.
Abstract:
Organic diradicals are highly promising candidates as future components in molecular electronic and spintronic devices because of their low spin-orbit coupling. To advance toward final circuit realizations, a thorough knowledge of the behavior of diradicals within a single-molecule junction framework is imperative. In this work, we have measured for the first time the single-molecule conductance of a neutral open-shell diradical compound, a [2,1-b] isomer of indenofluorene (IF). Our results reveal that the conductance of the [2,1-b] isomer is about 1 order of magnitude higher than that of the corresponding closed-shell regioisomer [1,2-b] IF. This is significant, as it fundamentally demonstrates the possibility of forming stable single-molecule junctions using neutral diradical compounds which are also highly conducting. This opens up a new approach to the development of externally addressable spintronic devices operable at room temperature.
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