Department of Chemistry, University of Pavia, V. le Taramelli 12, 27100, Pavia, Italy.
National Research Council of Italy, Istituto di Scienze e Tecnologie Chimiche, Via M. Bianco 9, 20131, Milano, Italy.
Chempluschem. 2020 Jun;85(6):1145-1155. doi: 10.1002/cplu.202000274.
The research on systems able to perform controllable motions under external stimuli arises great interest in the scientific community. Over the years, a library of innovative devices has been produced, classified in different categories according to the molecular or supramolecular level of motion. This minireview aims to highlight some representative studies, in which organic cages are used as building blocks for mechanically interlocked molecules, and in which intramolecular motions are triggered by external input. However, the application of organic cages in the construction of molecular machines is hardly achieved. A good compromise must actually be reached, between flexibility and rigidity of the cage's framework for an effective control of the intra- and/or intermolecular motion in the final mechanical device. Our final goal is to stimulate researchers' curiosity towards cage-like molecules, so that they take on the challenge of converting a cage into a molecular machine.
能够在外场刺激下进行可控运动的系统研究引起了科学界的极大兴趣。多年来,已经产生了一系列创新设备,根据运动的分子或超分子水平进行了分类。本篇迷你综述旨在强调一些有代表性的研究,其中有机笼作为机械互锁分子的构建块,并且通过外部输入触发分子内运动。然而,有机笼在构建分子机器中的应用几乎没有实现。实际上,必须在笼状框架的灵活性和刚性之间达成良好的平衡,以便在最终的机械装置中有效控制内/或分子间运动。我们的最终目标是激发研究人员对笼状分子的好奇心,使他们接受将笼转化为分子机器的挑战。