Liu Zhihua, Chen Ya-Zhi, Wang Ji, Nie Qingling, Zhao Wei, Wu Biao
Key Laboratory of Medicinal Molecule Science and Pharmaceutics Engineering, Ministry of Industry and Information Technology, School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing 102488, China.
Beilstein J Org Chem. 2025 Apr 29;21:845-853. doi: 10.3762/bjoc.21.68. eCollection 2025.
The dual-host strategy offers a straightforward approach to ion separation, yet the nature of cooperative interactions between receptor-complexed cations and anions remains poorly understood. In this study, we utilize 18-crown-6 as a cation receptor and a tripodal hexaurea receptor as an anion receptor to extract cesium salts (chloride, nitrate, carbonate, sulfate, and phosphate) from the solid phase into chloroform. Remarkably, CsPO exhibits the highest extraction efficiency, driven by strong cooperative interactions involving ion-dipole coordination between Cs and carbonyl (C=O) groups, as well as direct ion-pairing interactions between 18-crown-6-complexed Cs and hexaurea-bound PO . Single-crystal structural analysis corroborates these interactions, shedding light on the underlying mechanisms and providing valuable guidance for the rational design of advanced dual-host systems for selective ion separation.
双主体策略为离子分离提供了一种直接的方法,但受体络合的阳离子和阴离子之间协同相互作用的本质仍知之甚少。在本研究中,我们利用18-冠-6作为阳离子受体,利用三脚架六脲受体作为阴离子受体,将铯盐(氯化物、硝酸盐、碳酸盐、硫酸盐和磷酸盐)从固相中萃取到氯仿中。值得注意的是,CsPO表现出最高的萃取效率,这是由Cs与羰基(C=O)基团之间的离子偶极配位以及18-冠-6络合的Cs与六脲结合的PO之间的直接离子对相互作用所驱动的强协同相互作用所致。单晶结构分析证实了这些相互作用,揭示了潜在机制,并为合理设计用于选择性离子分离的先进双主体系统提供了有价值的指导。