Unité de Chimie Environnementale et Interactions sur le Vivant, EA 4492, Université du Littoral Côte d'Opale, 145 Avenue Maurice Schumann, MREI 1, Dunkerque, France.
Org Biomol Chem. 2019 Aug 7;17(31):7330-7336. doi: 10.1039/c9ob01306g.
The present study describes the synthesis of the first phenoxycalix[4]pyrrole-epichlorohydrin based polymer. The advantage of the latter resides in its fast-single step synthesis protocol, low cost, water insolubility and its unexpected anion extraction capacity. The study of this polymer by various solid/liquid extractions with halides in aqueous solutions and quantitative ion chromatography analysis showed that unlike other calix[4]pyrrole-based entities, this polymer extracts iodide rather than bromide and fluoride owing to the presence of large extraction pockets. Evidence of an anion exchange process involving preferably chloride and bromide was also highlighted.
本研究描述了首例苯氧杯[4]吡咯-表氯醇基聚合物的合成。后者的优点在于其快速的单步合成方案、低成本、不溶于水以及出人意料的阴离子萃取能力。通过各种固/液萃取以及定量离子色谱分析,研究了该聚合物在水溶液中的卤化物,结果表明,与其他杯[4]吡咯基实体不同,由于存在较大的萃取口袋,该聚合物萃取的是碘化物而不是溴化物和氟化物。此外,还强调了涉及优选氯离子和溴离子的阴离子交换过程的证据。