The G-3 poly(ethylene imine) ligand L2 shows a multifaceted coordination ability, being able to bind metal cations, anions and ion-pairs. The equilibrium constants for the formation of metal (Cu2+, Zn2+), anion (SO42-) and ion-pair (Cu2+/SO42-) complexes were determined in 0.1 M Me4NCl aqueous solution at 298.1 ± 0.1 K by means of potentiometric titrations. Thanks to its dendrimeric nature, L2 can form highly nucleated metal complexes, such as Cu5L210+ and Zn4L28+, in successive and well-defined complexation steps. Protonated forms of L2 give rise to relatively weak anion complexes with SO42-, but the addition of Cu2+ significantly enhances the binding ability of the ligand toward this anion below pH 9. In more alkaline solutions, an opposite trend is observed. The coordination properties of L2 are discussed with the support of modelling calculations. According to results, L2 is a promising molecule for the preparation of solid supported materials for the recovery of cations and anions from aqueous media and/or for applications in heterogeneous catalysis.

Cation, anion and ion-pair complexes with a G-3 poly(ethylene imine) dendrimer in aqueous solution / Savastano, Matteo; Bazzicalupi, Carla; Giorgi, Claudia; Gratteri, Paola; Bianchi, Antonio. - In: MOLECULES. - ISSN 1420-3049. - STAMPA. - 22:(2017), pp. 816-816. [10.3390/molecules22050816]

Cation, anion and ion-pair complexes with a G-3 poly(ethylene imine) dendrimer in aqueous solution

SAVASTANO, MATTEO;BAZZICALUPI, CARLA;GIORGI, CLAUDIA;GRATTERI, PAOLA;BIANCHI, ANTONIO
2017

Abstract

The G-3 poly(ethylene imine) ligand L2 shows a multifaceted coordination ability, being able to bind metal cations, anions and ion-pairs. The equilibrium constants for the formation of metal (Cu2+, Zn2+), anion (SO42-) and ion-pair (Cu2+/SO42-) complexes were determined in 0.1 M Me4NCl aqueous solution at 298.1 ± 0.1 K by means of potentiometric titrations. Thanks to its dendrimeric nature, L2 can form highly nucleated metal complexes, such as Cu5L210+ and Zn4L28+, in successive and well-defined complexation steps. Protonated forms of L2 give rise to relatively weak anion complexes with SO42-, but the addition of Cu2+ significantly enhances the binding ability of the ligand toward this anion below pH 9. In more alkaline solutions, an opposite trend is observed. The coordination properties of L2 are discussed with the support of modelling calculations. According to results, L2 is a promising molecule for the preparation of solid supported materials for the recovery of cations and anions from aqueous media and/or for applications in heterogeneous catalysis.
2017
22
816
816
Savastano, Matteo; Bazzicalupi, Carla; Giorgi, Claudia; Gratteri, Paola; Bianchi, Antonio
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1093957
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