Supramolecular Machines and ARchitectures Team, Institut des Biomolécules Max Mousseron (IBMM) UMR 5247 CNRS, Université Montpellier, ENSCM, Case Courrier 1706, Bâtiment Chimie (17), 3ème étage, Faculté des Sciences, Place Eugène Bataillon, 34095 Montpellier CEDEX 5, France.
Molecules. 2017 Nov 21;22(11):2017. doi: 10.3390/molecules22112017.
Interlocked molecular machines like [2]rotaxanes are intriguing aesthetic molecules. The control of the localization of the macrocycle, which surrounds a molecular axle, along the thread leads to translational isomers of very different properties. Although many moieties have been used as sites of interactions for crown ethers, the very straightforwardly obtained amide motif has more rarely been envisaged as molecular station. In this article, we report the use of secondary and tertiary amide moieties as efficient secondary molecular station in pH-sensitive molecular shuttles. Depending on the -substitution of the amide station, and on deprotonation or deprotonation-carbamoylation, the actuation of the molecular machinery differs accordingly to very distinct interactions between the axle and the DB24C8.
互锁分子机器,如[2]轮烷,是引人入胜的美学分子。大环(环绕分子轴)在沿螺旋轨道的定位控制导致具有非常不同性质的平移异构体。虽然许多部分已被用作冠醚的相互作用位点,但酰胺基元作为分子固定点的情况更为少见。在本文中,我们报告了仲酰胺和叔酰胺部分作为 pH 敏感分子梭中的有效二级分子固定点的使用。根据酰胺固定点的取代基,以及去质子化或去质子化-氨甲酰化,分子机械的致动相应地有所不同,这取决于轴和 DB24C8 之间的非常不同的相互作用。