Lirette Frédéric, Bliksted Roug Pedersen Viktor, Gagnon Félix, Brøndsted Nielsen Mogens, Fernández Israel, Morin Jean-François
Department of Chemistry and Centre de Recherche sur les Matériaux Avancés (CERMA), Université Laval, 1045 Ave de la Medecine, Québec, QC Canada, G1V0A6.
Department of Chemistry, University of Copenhagen, Universitetsparken 5, DK-2100, Copenhagen Ø, Denmark.
Angew Chem Int Ed Engl. 2024 Dec 2;63(49):e202410458. doi: 10.1002/anie.202410458. Epub 2024 Oct 21.
The synthesis of diradical organic compounds has garnered significant attention due to their thermally accessible spin inversion and optoelectronic properties. Yet, preparing such stable structures with high open-shell behavior remains challenging. Herein, we report the synthesis and properties of four π-extended, fused fluorene derivatives with high diradical character, taking advantage of a molecular design where the closed-shell does not include any Clar sextet, comparatively to a maximum of 5 in the corresponding open-shell state. This led to an unusual open-shell triplet ground state with an outstanding singlet-triplet energy difference (ΔE) of ca. 19 kcal/mol, one of the highest values reported to date for an all-carbon conjugated scaffold. Incorporation of dithiafulvene units at each end of the molecule (at the five-membered rings) furnishes extended tetrathiafulvalenes (TTFs) undergoing reversible oxidations to the radical cation and diradical dication. The various pro-aromatic structures presented herein show highly localized spin density and a limited conjugation due to the confined π-electrons in the aromatic cycles, as supported by H NMR, UV/Visible, EPR spectroscopy and DFT calculations.
双自由基有机化合物的合成因其热可及的自旋反转和光电性质而备受关注。然而,制备具有高开壳层行为的稳定结构仍然具有挑战性。在此,我们利用一种分子设计方法,报道了四种具有高双自由基特征的π-扩展稠合芴衍生物的合成及性质,该设计中闭壳层不包含任何克莱尔六隅体,而相应的开壳层状态下最多有5个。这导致了一种不寻常的开壳层三重态基态,其单重态-三重态能量差(ΔE)约为19 kcal/mol,是迄今为止报道的全碳共轭骨架中最高的值之一。在分子两端(五元环处)引入二硫富烯单元,得到了可进行可逆氧化生成自由基阳离子和双自由基二价阳离子的扩展四硫富瓦烯(TTF)。本文展示的各种准芳香结构由于芳香环中受限的π电子而表现出高度局域化的自旋密度和有限的共轭,这得到了核磁共振氢谱、紫外/可见光谱、电子顺磁共振光谱和密度泛函理论计算的支持。