In this work, we compare the anion-binding capabilities of receptors 1-5, characterized by similar structures, but possessing different hydrogen-bond-donor moieties (urea, squaramide, and sulfonamide). The presence of chromophoric substituents on the receptor's skeleton allowed the detn. of assocn. consts. by performing UV/Vis titrns. with the investigated anions on solns. of the receptors in pure acetonitrile. Addnl. quant. studies of the anion-binding properties of receptors 1-5 were performed by isothermal titrn. calorimetry (ITC). The exptl. results indicated that 1 and 2 formed 1:1 hydrogen-bonded complexes with most of the anions investigated. In the case of receptors 3-5, the formation of the 1:1 adduct was obsd. only with anions of low basicity (i.e., chloride, bromide, iodide, and hydrogen sulfate). With more basic anions (i.e., acetate and dihydrogen phosphate), both spectrophotometric and ITC titrns. accounted for the deprotonation of the sulfonamide group, involving the formation of the conjugated base of the receptor.

Urea-, squaramide-, and sulfonamide-based anion receptors:a thermodynamic study

AMENDOLA, VALERIA
;
FABBRIZZI, LUIGI;MOSCA, LORENZO;
2011-01-01

Abstract

In this work, we compare the anion-binding capabilities of receptors 1-5, characterized by similar structures, but possessing different hydrogen-bond-donor moieties (urea, squaramide, and sulfonamide). The presence of chromophoric substituents on the receptor's skeleton allowed the detn. of assocn. consts. by performing UV/Vis titrns. with the investigated anions on solns. of the receptors in pure acetonitrile. Addnl. quant. studies of the anion-binding properties of receptors 1-5 were performed by isothermal titrn. calorimetry (ITC). The exptl. results indicated that 1 and 2 formed 1:1 hydrogen-bonded complexes with most of the anions investigated. In the case of receptors 3-5, the formation of the 1:1 adduct was obsd. only with anions of low basicity (i.e., chloride, bromide, iodide, and hydrogen sulfate). With more basic anions (i.e., acetate and dihydrogen phosphate), both spectrophotometric and ITC titrns. accounted for the deprotonation of the sulfonamide group, involving the formation of the conjugated base of the receptor.
2011
The Chemistry category includes resources that are general in nature and cover a broad spectrum of topics in the chemical sciences. Resources specifically covering analytical chemistry, inorganic and nuclear chemistry, organic chemistry, physical chemistry, and polymer science will be placed in those particular categories. Miscellaneous and applied chemistry resources may be placed in this category when not appropriate for specific subfields in chemistry.
Esperti anonimi
Inglese
Internazionale
STAMPA
17
21
5972
5981
10
anion receptor H-bonding interactions
anion; receptor; hydrogen bonding
http://onlinelibrary.wiley.com/doi/10.1002/chem.201003411/pdf
4
info:eu-repo/semantics/article
262
Amendola, Valeria; Fabbrizzi, Luigi; Mosca, Lorenzo; Schmidtchen Franz, Peter
1 Contributo su Rivista::1.1 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/337327
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