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A spectroscopic study on the coordination and solution structures of the interaction systems between biperoxidovanadate complexes and the pyrazolylpyridine-like ligands.

Authors :
Xian-Yong Yu
Lin Deng
Baishu Zheng
Bi-Rong Zeng
Pinggui Yi
Xin Xu
Source :
Dalton Transactions: An International Journal of Inorganic Chemistry; 2014, Vol. 43 Issue 4, p1524-1533, 10p
Publication Year :
2014

Abstract

In order to understand the substitution effects of pyrazolylpyridine (pzpy) on the coordination reaction equilibria, the interactions between a series of pzpy-like ligands and biperoxidovanadate ([OV(O<subscript>2</subscript>)<subscript>2</subscript>(D<subscript>2</subscript>O)]<superscript>−</superscript>/[OV(O<subscript>2</subscript>)<subscript>2</subscript>(HOD)]<superscript>−</superscript>, abbrv. bpV) have been explored using a combination of multinuclear (<superscript>1</superscript>H, <superscript>13</superscript>C, and <superscript>51</superscript>V) magnetic resonance, heteronuclear single quantum coherence (HSQC), and variable temperature NMR in a 0.15 mol L<superscript><superscript>−</superscript>1</superscript> NaCl D<subscript>2</subscript>O solution that mimics the physiological conditions. Both the direct NMR data and the equilibrium constants are reported for the first time. A series of new heptacoordinated peroxidovanadate species [OV(O<subscript>2</subscript>)<subscript>2</subscript>L]<superscript><superscript>−</superscript></superscript> (L = pzpy-like chelating ligands) are formed due to several competitive coordination interactions. According to the equilibrium constants for products between bpV and the pzpy-like ligands, the relative affinity of the ligands is found to be pzpy > 2-Esterpzpy ≈ 2-Me-pzpy ≈ 2-Amide-pzpy > 2-Et-pzpy. In the interaction system between bpV and pzpy, a pair of isomers (Isomers A and B) are observed in aqueous solution, which are attributed to different types of coordination modes between the metal center and the ligands, while the crystal structure of NH<subscript>4</subscript>[OV(O<subscript>2</subscript>)<subscript>2</subscript>(pzpy)]·6H<subscript>2</subscript>O (CCDC 898554) has the same coordination structure as Isomer A (the main product for pzpy). For the N-substituted ligands, however, Isomer A or B type complexes can also be observed in solution but the molar ratios of the isomer are reversed (i.e., Isomer B type is the main product). These results demonstrate that when the N atom in the pyrazole ring has a substitution group, hydrogen bonding (from the H atom in the pyrazole ring), the steric effect (from alkyl) and the solvation effect (from the ester or amide group) can jointly affect the coordination reaction equilibrium. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14779226
Volume :
43
Issue :
4
Database :
Complementary Index
Journal :
Dalton Transactions: An International Journal of Inorganic Chemistry
Publication Type :
Academic Journal
Accession number :
100078679
Full Text :
https://doi.org/10.1039/c3dt51986d