Azocalixarenes functionalized with cation binding sites are popular chromoionophores due to the ease of synthesis and the large complexation-induced shifts of their absorption band that originate from an azo-phenol-quinone-hydrazone tautomerism. Despite their extensive use, however, a thorough investigation of the structure of their metal complexes has not been reported. We describe herein the synthesis of a new azocalixarene ligand (2) and the study of its complexation properties with the Ca2+ cation. Through a combination of solution (H-1 NMR and UV-vis spectroscopies) and solid-state (X-ray diffractometry) techniques, we demonstrate that metal complexation induces a shift of the tautomeric equilibration towards the quinone-hydrazone form, while deprotonation of the complex results in the reversion to the azo-phenol tautomer.

A Combined Solution and Solid-State Study on the Tautomerism of an Azocalix[4]arene Chromoionophore / Baldini, L.; Balestri, D.; Marchio', L.; Casnati, A.. - In: MOLECULES. - ISSN 1420-3049. - 28:12(2023), p. 4704. [10.3390/molecules28124704]

A Combined Solution and Solid-State Study on the Tautomerism of an Azocalix[4]arene Chromoionophore

Baldini L.
;
Balestri D.;Marchio' L.;Casnati A.
2023-01-01

Abstract

Azocalixarenes functionalized with cation binding sites are popular chromoionophores due to the ease of synthesis and the large complexation-induced shifts of their absorption band that originate from an azo-phenol-quinone-hydrazone tautomerism. Despite their extensive use, however, a thorough investigation of the structure of their metal complexes has not been reported. We describe herein the synthesis of a new azocalixarene ligand (2) and the study of its complexation properties with the Ca2+ cation. Through a combination of solution (H-1 NMR and UV-vis spectroscopies) and solid-state (X-ray diffractometry) techniques, we demonstrate that metal complexation induces a shift of the tautomeric equilibration towards the quinone-hydrazone form, while deprotonation of the complex results in the reversion to the azo-phenol tautomer.
2023
A Combined Solution and Solid-State Study on the Tautomerism of an Azocalix[4]arene Chromoionophore / Baldini, L.; Balestri, D.; Marchio', L.; Casnati, A.. - In: MOLECULES. - ISSN 1420-3049. - 28:12(2023), p. 4704. [10.3390/molecules28124704]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11381/2956253
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