Two diorganotin(IV)–NANA complexes (NANA (1) = b-N-acetyl-Neuraminic Acid = 5-amino-3,5-dideoxy-D-glycero-b-D-galactononulosic acid) with formula Me2Sn(IV)NANA (2) and Bu2Sn(IV)NANA (3) were synthesized and characterized by 1H, 13C and 119Sn NMR spectroscopy, both in D2O and DMSO-d6 solutions. The experimental data in DMSO suggested the monosaccharide bidentate chelation via O1 carboxylate and vicinal O2 alkoxide atoms, which, in D2O, can be dynamically extended to a third binding site (O8 atom) of the pendant chain. Coordination at the tin atom is discussed on the basis of experimental NMR data and DFT calculation.
BERTAZZI, N., CASELLA, G., FERRANTE, F., PELLERITO, L., ROTONDO, A., ROTONDO, E. (2007). Solution structure of R2Sn(IV)-β-N-Acetyl-Neuraminate (R=Me, Bu) complexes in D2O and DMSO-d6: experimental NMR and DFT computational study. DALTON TRANSACTIONS, 14, 1440-1446 [10.1039/b616330k].
Solution structure of R2Sn(IV)-β-N-Acetyl-Neuraminate (R=Me, Bu) complexes in D2O and DMSO-d6: experimental NMR and DFT computational study.
BERTAZZI, Nuccio;CASELLA, Girolamo;FERRANTE, Francesco;PELLERITO, Lorenzo;
2007-01-01
Abstract
Two diorganotin(IV)–NANA complexes (NANA (1) = b-N-acetyl-Neuraminic Acid = 5-amino-3,5-dideoxy-D-glycero-b-D-galactononulosic acid) with formula Me2Sn(IV)NANA (2) and Bu2Sn(IV)NANA (3) were synthesized and characterized by 1H, 13C and 119Sn NMR spectroscopy, both in D2O and DMSO-d6 solutions. The experimental data in DMSO suggested the monosaccharide bidentate chelation via O1 carboxylate and vicinal O2 alkoxide atoms, which, in D2O, can be dynamically extended to a third binding site (O8 atom) of the pendant chain. Coordination at the tin atom is discussed on the basis of experimental NMR data and DFT calculation.File | Dimensione | Formato | |
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