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Calix[4]pyrroles with long alkyl chains: Synthesis, characterization, and anion binding studies

机译:具有长烷基链的杯[4]吡咯:合成,表征和阴离子结合研究

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摘要

Calix[4]pyrrole derivatives bearing long n-alkyl ester chains have been synthesized from calix[4]pyrroles containing carboxylic acid functional groups. These systems, which contain ester groups on either the meso- carbon atoms of the calixpyrrole ring or the beta-positions of individual pyrrole rings, were prepared from the corresponding carboxylic acids. Esterification was effected using dicyclohexylcarbodiimide/4-dimethylaminopyridine (DCC/DMAP) to obtain long alkyl chain substituted calix[4]pyrroles. In the context of this work, several brominated calixpyrrole derivatives were prepared using N-bromosuccinimide (NBS) as the brominating agent. Anion binding studies carried out by isothermal titration calorimetry (ITC) in 1,2-dichloroethane with Cl- and CH3CO2- in the form of their respective tetrabutylammonium salts, revealed that the functionalized ester derivatives have anion binding affinities similar to those of the unsubstituted "parent" systems, octamethylcalix[4]pyrrole (1) and beta-octabromocalix[4]pyrrole (2). The new alkylated systems proved soluble in nonpolar solvents, such as hexanes. Structure identification studies, carried out by single crystal X-ray diffraction analyses, revealed that the control ester system 4 contains two unique crystal structures per asymmetric unit. These asymmetric units interact via intermolecular hydrogen bonds in the solid state to produce a continuous intermolecular structure. Such interactions are not present in the case of the corresponding brominated ester 5.
机译:由具有羧酸官能团的杯[4]吡咯合成了带有长正烷基酯链的杯[4]吡咯衍生物。由相应的羧酸制备这些系统,其在杯吡咯环的内碳原子或各个吡咯环的β-位置上包含酯基。使用二环己基碳二亚胺/ 4-二甲基氨基吡啶(DCC / DMAP)进行酯化以获得长烷基链取代的杯[4]吡咯。在这项工作的背景下,使用N-溴代琥珀酰亚胺(NBS)作为溴化剂制备了几种溴化的杯吡咯衍生物。通过等温滴定热法(ITC)在1,2-二氯乙烷中分别以四丁基铵盐形式的Cl-和CH3CO2-进行阴离子结合研究,结果表明,官能化的酯衍生物的阴离子结合亲和力与未取代的“亲本”系统,即八甲基杯[4]吡咯(1)和β-八溴邻苯并[4]吡咯(2)。新的烷基化体系证明可溶于非极性溶剂,如己烷。通过单晶X射线衍射分析进行的结构鉴定研究表明,对照酯体系4每个不对称单元包含两个独特的晶体结构。这些不对称单元通过固态的分子间氢键相互作用以产生连续的分子间结构。在相应的溴化酯5中不存在这种相互作用。

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