Department of Chemistry, University of Texas at Austin, 105 E. 24th Street A5300, Austin, TX, 78712-1224, USA.
Angew Chem Int Ed Engl. 2017 Oct 16;56(43):13396-13400. doi: 10.1002/anie.201705788. Epub 2017 Aug 9.
Current approaches to lowering the pH of basic media rely on the addition of a proton source. An alternative approach is described herein that involves the liquid-liquid extraction-based removal of cesium salts, specifically CsOH and Cs CO , from highly basic media. A multitopic ion-pair receptor (2) is used that can recognize and extract the hydroxide and carbonate anions as their cesium salts, as confirmed by H NMR spectroscopic titrations, ICP-MS, single-crystal structural analyses, and theoretical calculations. A sharp increase in the pH and cesium concentrations in the receiving phase is observed when receptor 2 is employed as a carrier in U-tube experiments involving the transport of CsOH through an intervening chloroform layer. The pH of the source phase likewise decreases.
目前降低碱性介质 pH 值的方法依赖于质子源的添加。本文描述了一种替代方法,涉及基于液-液萃取从高碱性介质中去除铯盐,特别是 CsOH 和 CsCO3。使用了一种多齿离子对受体(2),可以识别并提取氢氧根和碳酸根阴离子作为它们的铯盐,这一点通过 1H NMR 光谱滴定、ICP-MS、单晶结构分析和理论计算得到了证实。在 U 形管实验中,当受体 2 作为载体用于通过中间氯仿层传输 CsOH 时,观察到接收相的 pH 值和铯浓度急剧增加。同样,源相的 pH 值也会降低。