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在液-液和二维受限界面处切换硫杂杯[4]芳烃单冠醚的离子结合选择性。

Switching Ion Binding Selectivity of Thiacalix[4]arene Monocrowns at Liquid-Liquid and 2D-Confined Interfaces.

机构信息

Arbuzov Institute of Organic and Physical Chemistry, FRC Kazan Scientific Center, Russian Academy of Sciences, Arbuzov Str. 8, 420088 Kazan, Russia.

Butlerov Institute of Chemistry, Kazan Federal University, Kremlevskaya Str. 18, 420008 Kazan, Russia.

出版信息

Int J Mol Sci. 2021 Mar 29;22(7):3535. doi: 10.3390/ijms22073535.

Abstract

Understanding the interaction of ions with organic receptors in confined space is of fundamental importance and could advance nanoelectronics and sensor design. In this work, metal ion complexation of conformationally varied thiacalix[4]monocrowns bearing lower-rim hydroxy (type I), dodecyloxy (type II), or methoxy (type III) fragments was evaluated. At the liquid-liquid interface, alkylated thiacalixcrowns-5(6) selectively extract alkali metal ions according to the induced-fit concept, whereas crown-4 receptors were ineffective due to distortion of the crown-ether cavity, as predicted by quantum-chemical calculations. In type-I ligands, alkali-metal ion extraction by the solvent-accessible crown-ether cavity was prevented, which resulted in competitive Ag extraction by sulfide bridges. Surprisingly, amphiphilic type-I/II conjugates moderately extracted other metal ions, which was attributed to calixarene aggregation in salt aqueous phase and supported by dynamic light scattering measurements. Cation-monolayer interactions at the air-water interface were monitored by surface pressure/potential measurements and UV/visible reflection-absorption spectroscopy. Topology-varied selectivity was evidenced, towards Sr (crown-4), K (crown-5), and Ag (crown-6) in type-I receptors and Na (crown-4), Ca (crown-5), and Cs (crown-6) in type-II receptors. Nuclear magnetic resonance and electronic absorption spectroscopy revealed exocyclic coordination in type-I ligands and cation-π interactions in type-II ligands.

摘要

理解离子与有机受体在受限空间中的相互作用具有重要的基础性意义,可能会推进纳米电子学和传感器设计的发展。在这项工作中,评估了具有下边缘羟(I 型)、十二烷氧基(II 型)或甲氧基(III 型)片段的构象变化硫代杯[4]冠醚的金属离子络合作用。在液-液界面上,根据诱导契合概念,烷基化硫代杯[4]冠醚-5(6)选择性地提取碱金属离子,而冠醚-4 受体由于冠醚空腔的变形而无效,这与量子化学计算的预测一致。在 I 型配体中,溶剂可及的冠醚空腔中碱金属离子的提取受到阻碍,这导致硫醚桥的竞争性 Ag 提取。令人惊讶的是,两亲性 I/II 型缀合物适度地提取了其他金属离子,这归因于盐水溶液中杯芳烃的聚集,这一观点得到了动态光散射测量的支持。通过表面压力/电位测量和紫外/可见反射吸收光谱监测了在气-液界面上的阳离子单层相互作用。在 I 型受体中,对 Sr(冠醚-4)、K(冠醚-5)和 Ag(冠醚-6)以及在 II 型受体中对 Na(冠醚-4)、Ca(冠醚-5)和 Cs(冠醚-6)表现出拓扑变化的选择性。核磁共振和电子吸收光谱揭示了 I 型配体中环外配位和 II 型配体中阳离子-π相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b279/8038083/16dcb9874513/ijms-22-03535-g001.jpg

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