Kaiser Lukáš, Landovský Tomáš, Salvadori Karolína, Eigner Václav, Dvořáková Hana, Lhoták Pavel
Department of Organic Chemistry, University of Chemistry and Technology, Prague (UCTP) Technická 5 166 28 Prague 6 Czech Republic
Department of Physical Chemistry, UCTP 166 28 Prague 6 Czech Republic.
RSC Adv. 2021 Nov 17;11(58):36934-36941. doi: 10.1039/d1ra07464d. eCollection 2021 Nov 10.
A novel approach to calix[5-7]arenes possessing mixed (S and CH) bridges within the skeleton is based on the reaction of thiacalix[4]arene monosulfoxide with BuLi leading to a linear phenolic tetramer in essentially quantitative yield. This key intermediate is then cyclized with suitable building blocks to give macrocyclic calixarene analogues. Compared to the traditional stepwise construction of similar systems, this procedure based on thiacalixarene cleavage represents a scalable, robust, and straightforward synthesis and enables the preparation of larger calixarenes on a gram scale. As shown by H NMR and UV-vis titration experiments, the mixed-bridge calix[7]arene is able to recognize fullerenes C and C, thus showing possible applications of such systems. The structures of the mixed bridge systems were confirmed by single crystal X-ray analysis, and the behavior of novel macrocyclic skeletons in solution was studied using dynamic NMR techniques.
一种合成骨架中含有混合(S和CH)桥连的杯[5 - 7]芳烃的新方法,是基于硫杂杯[4]芳烃单亚砜与丁基锂反应,以基本定量的产率生成线性酚类四聚体。然后,这个关键中间体与合适的结构单元环化,得到大环杯芳烃类似物。与传统的逐步构建类似体系的方法相比,这种基于硫杂杯芳烃裂解的方法代表了一种可扩展、稳健且直接的合成方法,能够以克级规模制备更大的杯芳烃。如¹H NMR和紫外 - 可见滴定实验所示,混合桥连杯[7]芳烃能够识别富勒烯C₆₀和C₇₀,从而展示了此类体系的潜在应用。混合桥连体系的结构通过单晶X射线分析得以确认,并且使用动态核磁共振技术研究了新型大环骨架在溶液中的行为。