Desroches Maude, Mayorga Burrezo Paula, Boismenu-Lavoie Joël, Peña Álvarez Miriam, Gómez-García Carlos J, Matxain Jon M, Casanova David, Morin Jean-François, Casado Juan
Département de Chimie, Université Laval, 1045 Ave de la Médecine, Québec, G1V 0A6, Canada.
Department of Physical Chemistry, University of Málaga, Andalucia-Tech, Campus de Teatinos s/n, 29071, Málaga, Spain.
Angew Chem Int Ed Engl. 2017 Dec 18;56(51):16212-16217. doi: 10.1002/anie.201708740. Epub 2017 Nov 28.
New anthanthrone-based polycyclic scaffolds possessing peripheral crowded quinodimethanes have been prepared. While the compounds adopt a closed-shell butterfly-shaped structure in the ground state, a curved-to-planar fluxional inversion is accessible with a low energy barrier through a biradicaloid transition state. Inversion is primarily driven by the release of strain associated with steric hindrance at the peri position of the anthanthrone core; a low-lying diradical state is accessible through planarization of the core, which is attained in solution at moderate temperatures. The most significant aspect of this transformation is that planarization is also achieved by application of mild pressure in the solid state, wherein the diradical remains kinetically trapped. Complementary information from quantum chemistry, H NMR, and Raman spectroscopies, together with magnetic experiments, is consistent with the formation of a nanographene-like structure that possesses radical centers localized at the exo-anthanthrone carbons bearing phenyl substituents.
已制备出具有外围拥挤醌二甲烷的新型基于蒽酮的多环支架。虽然这些化合物在基态采用闭壳蝴蝶形结构,但通过双自由基过渡态可实现低能垒的从弯曲到平面的流动反转。反转主要是由与蒽酮核心周边位置的空间位阻相关的应变释放驱动的;通过核心的平面化可达到一个低能双自由基状态,在中等温度下的溶液中即可实现。这种转变最显著的方面是,在固态下通过施加温和压力也能实现平面化,其中双自由基在动力学上被捕获。来自量子化学、1H NMR和拉曼光谱以及磁性实验的补充信息与形成一种类似纳米石墨烯的结构一致,该结构的自由基中心位于带有苯基取代基的外蒽酮碳上。