Razi Syed S, Marin-Luna Marta, Alajarin Mateo, Martinez-Cuezva Alberto, Berna Jose
Departamento de Química Orgánica, Facultad de Química, Regional Campus of International Excellence "Campus Mare Nostrum", Universidad de Murcia, E-30100, Murcia, Spain.
Commun Chem. 2024 Aug 4;7(1):170. doi: 10.1038/s42004-024-01258-4.
The development of efficient methods for the synthesis of mechanically interlocked compounds is currently considered a major challenge in supramolecular chemistry. Twofold vinylogous fumaramides, a class of conjugated bis(enaminones), successfully achieve the assembly of hydrogen-bonded amide-based rotaxanes, with a templating ability comparable to that of their parent fumaramide-based systems, showcasing full conversions and impressive yields up to 92%. Computational calculations offer a compelling explanation for the remarkable efficiency of these bis(enaminones) in driving the synthesis of unprecedented rotaxanes. The reactivity of these interlocked species was thoroughly investigated, revealing that a one-step double stopper-exchange process can be successfully performed while preserving the mechanical bond. This approach facilitates the formation of controllable rotaxanes, including a three-station molecular shuttle, whose assembly via a clipping methodology is highly unselective. The internal translational motion of this latter species has been successfully controlled in a reversible way by means of a cycloaddition/retrocycloaddition sequence.
目前,开发高效合成机械互锁化合物的方法被认为是超分子化学中的一项重大挑战。双烯丙基富马酰胺,一类共轭双(烯胺酮),成功实现了基于氢键酰胺的轮烷的组装,其模板能力与其母体基于富马酰胺的体系相当,展示了高达92%的完全转化率和令人印象深刻的产率。计算计算为这些双(烯胺酮)在驱动前所未有的轮烷合成中的显著效率提供了令人信服的解释。对这些互锁物种的反应性进行了深入研究,结果表明,可以在保留机械键的同时成功进行一步双封端交换过程。这种方法有助于形成可控的轮烷,包括一个三站分子穿梭体,其通过剪切方法进行组装具有高度非选择性。通过环加成/逆环加成序列,成功地以可逆方式控制了后一种物种的内部平移运动。