Hamacek Josef, Sokolov Jan, Šindelář Vladimír
Centre de Biophysique Moléculaire (CBM), CNRS UPR4301, Rue Charles Sadron, 45071, Orléans, France.
Department of Chemistry and RECETOX, Faculty of Science, Masaryk University, Kamenice 5, 62500, Brno, Czech Republic.
Chemistry. 2021 Mar 22;27(17):5492-5497. doi: 10.1002/chem.202005140. Epub 2021 Feb 26.
Herein, it is shown how bambusurils can be used for tuning and/or characterizing supramolecular systems. Indeed, the addition of bambusurils as anion scavengers to metal-mediated self-assemblies allows manipulation of the subtle equilibria in the given system. This is demonstrated for the case of the tetranuclear europium helical cage, which is well suited to different applications. Among the reported results, experimental evidence is provided showing that perchlorate and triflate anions act as a molecular template for the cage assembly. The complexation of inorganic anions with neutral bambusurils resulted in bulky non-coordinating counterions that may trigger the self-assembly process or stimulate specific interactions between components. Moreover, bambusuril was able to selectively remove coordinating nitrates from the mixture with non-coordinating anions, enabling the regeneration of the helical cage.
在此展示了竹节环脲如何用于调节和/或表征超分子体系。实际上,将竹节环脲作为阴离子清除剂添加到金属介导的自组装体系中,可以操纵给定体系中的微妙平衡。四核铕螺旋笼的情况就证明了这一点,它非常适合不同的应用。在已报道的结果中,提供了实验证据表明高氯酸根和三氟甲磺酸根阴离子作为笼组装的分子模板。无机阴离子与中性竹节环脲的络合产生了庞大的非配位抗衡离子,这些抗衡离子可能触发自组装过程或刺激组分之间的特定相互作用。此外,竹节环脲能够从与非配位阴离子的混合物中选择性地去除配位硝酸盐,从而使螺旋笼得以再生。