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Enhanced molecular binding affinity toward aromatic dications by anthracene-derived crown ethers in water.
Zhou, Jia-Liang; Li, Yan-Hong; Zhang, Ying-Ming; Chen, Ling; Liu, Yu.
Affiliation
  • Zhou JL; College of Chemistry and Chemical Engineering, Jiangxi Normal University, Nanchang 330022, P. R. China. chenlingjxnu@163.com.
  • Li YH; College of Chemistry and Chemical Engineering, Jiangxi Normal University, Nanchang 330022, P. R. China. chenlingjxnu@163.com.
  • Zhang YM; College of Chemistry, State Key Laboratory of Elemento-Organic Chemistry, Nankai University, Tianjin 300071, P. R. China. yuliu@nankai.edu.cn.
  • Chen L; College of Chemistry and Chemical Engineering, Jiangxi Normal University, Nanchang 330022, P. R. China. chenlingjxnu@163.com.
  • Liu Y; College of Chemistry, State Key Laboratory of Elemento-Organic Chemistry, Nankai University, Tianjin 300071, P. R. China. yuliu@nankai.edu.cn.
Org Biomol Chem ; 21(1): 107-114, 2022 12 21.
Article in En | MEDLINE | ID: mdl-36484413
ABSTRACT
The pursuit of high molecular binding affinity using conventional crown ethers in water remains a challenging task in the field of supramolecular chemistry and may hold great promise in the creation of advanced biocompatible nanoconstructs. In this work, the molecular binding strength toward a series of structurally relevant cationic guests has been greatly enhanced by tetrasulfonated 1,5-dianthracenyl-42-crown-10 and as investigated by means of 1H NMR, UV-vis, and fluorescence spectroscopy, the host-guest association constants can reach up to 108 M-1 order of magnitude in aqueous solution. X-ray crystal diffraction analysis further demonstrates that the aromatic dication can be tightly encapsulated in the ring of anthracene-derived crown ether via multiple π-stacking and electrostatic interactions. Meanwhile, the obtained association constants are remarkably higher than the ones in the cases of the known benzene- and naphthalene-derived sulfonated crown ethers, substantiating that the appropriate extension of π-conjugation in the molecular skeleton of crown ether is a feasible method in attaining a highly affiliative host-guest complex. Taken together, our results indicate that the anthracene-based sulfonated crown ether can be developed as a new family of water-soluble macrocyclic receptors in the fabrication of functional nanoarchitectures.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Crown Ethers Language: En Journal: Org Biomol Chem Journal subject: BIOQUIMICA / QUIMICA Year: 2022 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Crown Ethers Language: En Journal: Org Biomol Chem Journal subject: BIOQUIMICA / QUIMICA Year: 2022 Document type: Article