Supramolecular Machines and Architectures Team, IBMM, Univ Montpellier, CNRS, ENSCM, Montpellier, France.
Chemistry. 2021 Dec 15;27(70):17576-17580. doi: 10.1002/chem.202103805. Epub 2021 Nov 24.
This paper reports the synthesis and study of new pH-sensitive DB24C8-based [2]rotaxane molecular shuttles that contain within their axle four potential sites of interaction for the DB24C8: ammonium, amine, Weinreb amide, and ketone. In the protonated state, the DB24C8 lay around the best ammonium site. After either deprotonation or deprotonation-then-carbamoylation of the ammonium, different localizations of the DB24C8 were seen, depending on both the number and nature of the secondary stations and steric restriction. Unexpectedly, the results indicated that the Weinreb amide was not a proper secondary molecular station for the DB24C8. Nevertheless, through its methoxy side chain, it slowed down the shuttling of the macrocycle along the threaded axle, thereby partitioning the [2]rotaxane into two translational isomers on the NMR timescale. The ketone was successfully used as a secondary molecular station, and its weak affinity for the DB24C8 was similar to that of a secondary amine.
本文报道了新型 pH 敏感的基于 DB24C8 的[2]轮烷分子梭的合成与研究,其轴上含有四个潜在的 DB24C8 相互作用位点:铵、胺、Weinreb 酰胺和酮。在质子化状态下,DB24C8 围绕最佳的铵位点排列。铵去质子化或去质子化-然后酰胺化后,DB24C8 的不同定位取决于次级站点的数量和性质以及空间位阻。出乎意料的是,结果表明,Weinreb 酰胺不是 DB24C8 的合适次级分子站点。然而,通过其甲氧基侧链,它减缓了大环沿螺旋轴的穿梭,从而在 NMR 时间尺度上将[2]轮烷分成两个平移异构体。酮成功地用作次级分子站点,其与 DB24C8 的弱亲和力类似于次级胺。