Copper(II) azacyclam complexes were obtained through a metal-templated procedure involving the pertinent open-chain tetramine, formaldehyde and a phenylurea derivative as a locking fragment. Both metal complexes can establish interactions with anions through the metal centre and the amide NH group. Equilibrium studies in DMSO by a spectrophotometric titration technique were carried out to assess the affinity of the complexes towards anions. While the NH group of an amide model compound and the metal centre of the plain CuII(azacyclam)2+ complex do not interact at all with anions, the new complexes establish strong interactions with oxo anions, profiting from a pronounced cooperative effect. In particular, 1) they form stable 1:1 and 1:2 complexes with H2PO4- ions in a stepwise mode with both hydrogen-bonding and metal–ligand interactions, and 2) in the presence of CH3COO-, they undergo deprotonation of the amido NH group and thus profit from axial coordination of the partially negatively charged carbonyl oxygen atom in a scorpionate binding mode.

Templated Synthesis of Copper(II) Azacyclam Complexes Using Urea as a Locking Fragment and Their Metal-Enhanced Binding Tendencies towards Anions

BOIOCCHI, MASSIMO;FABBRIZZI, LUIGI;LICCHELLI, MAURIZIO;MOSCA, LORENZO;ZANINI, CRISTINA
2009-01-01

Abstract

Copper(II) azacyclam complexes were obtained through a metal-templated procedure involving the pertinent open-chain tetramine, formaldehyde and a phenylurea derivative as a locking fragment. Both metal complexes can establish interactions with anions through the metal centre and the amide NH group. Equilibrium studies in DMSO by a spectrophotometric titration technique were carried out to assess the affinity of the complexes towards anions. While the NH group of an amide model compound and the metal centre of the plain CuII(azacyclam)2+ complex do not interact at all with anions, the new complexes establish strong interactions with oxo anions, profiting from a pronounced cooperative effect. In particular, 1) they form stable 1:1 and 1:2 complexes with H2PO4- ions in a stepwise mode with both hydrogen-bonding and metal–ligand interactions, and 2) in the presence of CH3COO-, they undergo deprotonation of the amido NH group and thus profit from axial coordination of the partially negatively charged carbonyl oxygen atom in a scorpionate binding mode.
2009
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
15
42
11288
11297
10
Templated Synthesis; copper complexes; anion recognition
http://www3.interscience.wiley.com/journal/122654992/issue
6
info:eu-repo/semantics/article
262
Boiocchi, Massimo; Fabbrizzi, Luigi; Mauro, Garolfi; Licchelli, Maurizio; Mosca, Lorenzo; Zanini, Cristina
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/11571/202624
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