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volume 22 issue 7 pages 3535

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

Ayrat Yakupov 2
Ramil Nugmanov 2
Ekaterina Trushina 3
Olga Babaeva 1
Guliya Nizameeva 4
Viktor Syakaev 1
Sergey Katsyuba 1
Igor Antipin 2
Publication typeJournal Article
Publication date2021-03-29
scimago Q1
wos Q1
SJR1.273
CiteScore9.0
Impact factor4.9
ISSN16616596, 14220067
PubMed ID:  33805474
Catalysis
Organic Chemistry
Inorganic Chemistry
Physical and Theoretical Chemistry
Computer Science Applications
Spectroscopy
Molecular Biology
General Medicine
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 Sr2+ (crown-4), K+ (crown-5), and Ag+ (crown-6) in type-I receptors and Na+ (crown-4), Ca2+ (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.

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Muravev A. A. et al. Switching Ion Binding Selectivity of Thiacalix[4]arene Monocrowns at Liquid–Liquid and 2D-Confined Interfaces // International Journal of Molecular Sciences. 2021. Vol. 22. No. 7. p. 3535.
GOST all authors (up to 50) Copy
Muravev A. A., Yakupov A., Gerasimova T., Nugmanov R., Trushina E., Babaeva O., Nizameeva G., Syakaev V., Katsyuba S., Selektor S. L., Solovieva S. E., Antipin I. Switching Ion Binding Selectivity of Thiacalix[4]arene Monocrowns at Liquid–Liquid and 2D-Confined Interfaces // International Journal of Molecular Sciences. 2021. Vol. 22. No. 7. p. 3535.
RIS |
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RIS Copy
TY - JOUR
DO - 10.3390/ijms22073535
UR - https://doi.org/10.3390/ijms22073535
TI - Switching Ion Binding Selectivity of Thiacalix[4]arene Monocrowns at Liquid–Liquid and 2D-Confined Interfaces
T2 - International Journal of Molecular Sciences
AU - Muravev, A. A.
AU - Yakupov, Ayrat
AU - Gerasimova, Tatiana
AU - Nugmanov, Ramil
AU - Trushina, Ekaterina
AU - Babaeva, Olga
AU - Nizameeva, Guliya
AU - Syakaev, Viktor
AU - Katsyuba, Sergey
AU - Selektor, Sofiya L.
AU - Solovieva, S. E.
AU - Antipin, Igor
PY - 2021
DA - 2021/03/29
PB - MDPI
SP - 3535
IS - 7
VL - 22
PMID - 33805474
SN - 1661-6596
SN - 1422-0067
ER -
BibTex |
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BibTex (up to 50 authors) Copy
@article{2021_Muravev,
author = {A. A. Muravev and Ayrat Yakupov and Tatiana Gerasimova and Ramil Nugmanov and Ekaterina Trushina and Olga Babaeva and Guliya Nizameeva and Viktor Syakaev and Sergey Katsyuba and Sofiya L. Selektor and S. E. Solovieva and Igor Antipin},
title = {Switching Ion Binding Selectivity of Thiacalix[4]arene Monocrowns at Liquid–Liquid and 2D-Confined Interfaces},
journal = {International Journal of Molecular Sciences},
year = {2021},
volume = {22},
publisher = {MDPI},
month = {mar},
url = {https://doi.org/10.3390/ijms22073535},
number = {7},
pages = {3535},
doi = {10.3390/ijms22073535}
}
MLA
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MLA Copy
Muravev, A. A., et al. “Switching Ion Binding Selectivity of Thiacalix[4]arene Monocrowns at Liquid–Liquid and 2D-Confined Interfaces.” International Journal of Molecular Sciences, vol. 22, no. 7, Mar. 2021, p. 3535. https://doi.org/10.3390/ijms22073535.