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Ðorđević, Luka; Valentini, Cataldo; Demitri, Nicola; Mézière, Cécile; Allain, Magali; Sallé, Marc; Folli, Andrea; Murphy, Damien; Mañas Valero, Samuel; Coronado Miralles, Eugenio
Perfil; Bonifazi, Davide
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This document is a artículoDate2020
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Herein we report an efficient synthesis to prepare O-doped nanographenes derived from the π-extension of pyrene. The derivatives are highly fluorescent and feature low oxidation potentials. Using electrooxidation, crystals of cationic mixed-valence (MV) complexes were grown in which the organic salts organize into face-to-face π-stacks, a favorable solid-state arrangement for organic electronics. Variable-temperature electron paramagnetic resonance (EPR) measurements and relaxation studies suggest a strong electron delocalization along the longitudinal axis of the columnar π-stacking architectures. Electric measurements of single crystals of the MV salts show a semiconducting behavior with a remarkably high conductivity at room temperature. These findings support the notion that π-extension of heteroatom-doped polycyclic aromatic hydrocarbons is an attractive approach to fabricate nanographenes with a broad spectrum of semiconducting properties and high charge mobilities.
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Ðorđević, Luka Valentini, Cataldo Demitri, Nicola Mézière, Cécile Allain, Magali Sallé, Marc Folli, Andrea Murphy, Damien Mañas Valero, Samuel Coronado Miralles, Eugenio Bonifazi, Davide 2020 O-Doped Nanographenes: A Pyrano/Pyrylium Route Towards Semiconducting Cationic Mixed-Valence Complexes Angewandte Chemie 59 10 4106 4114 |
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https://doi.org/10.1002/anie.201914025
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