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Journal ArticleDOI

Dioxo- and Oxovanadium(V) Complexes of Biomimetic Hydrazone ONO Donor Ligands: Synthesis, Characterisation, and Reactivity

TLDR
In this paper, the dioxovanadium(V) complexes M[VO2(L)solv] (2, 5, 6) have been isolated along with dimeric, oxo-bridged monooxovanadium complexes with the formula [VOL}2µ-O] (1, 4), and characterised by their spectral and thermogravimetric properties and reactivity patterns.
Abstract
The dioxovanadium(V) complexes M[VO2(L)solv] (2, 5, 6) have been isolated along with dimeric, oxo-bridged monooxovanadium complexes with the formula [{VOL}2µ-O] (1, 4), and characterised by their spectral and thermogravimetric properties and reactivity patterns. H2L is the hydrazone H2{(R-sal)-iNH} [sal derives from salicylaldehyde (R = H) or p-Cl-salicylaldehyde (R = Cl)] or H2hap-iNH, where hap is the o-hydroxyacetophenone moiety, and iNH stands for isonicotinic acid hydrazide. In the isolated potassium (M = K) complexes 2a, 5 and 6, solv is a water molecule, which was exchanged for methanol or DMSO in the respective solutions as shown by 51V NMR. Treatment of the dimeric (1 and 4) or anionic complexes (2a and 5) with H2O2 yielded (unstable) oxoperoxovanadium complexes K[VO(O2)L] (7, 8). Acidification of 1 and 4 afforded oxohydroxo complexes. When compound 2a is dissolved in methanol, it is partly deoxygenated to form [VO(OMe)(HOMe)L] (9), the crystal and molecular structures of which have been determined, confirming the ONO binding mode of L in its enolate form.

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Journal ArticleDOI

Biological and medicinal aspects of vanadium

TL;DR: In this paper, the importance of vanadium in life processes is addressed, emphasising the vanadium cofactors in vanadate-dependent haloperoxidases and vanadium-nitrogenases.
Journal ArticleDOI

Homogeneous green catalysts for olefin oxidation by mono oxovanadium(V) complexes of hydrazone Schiff base ligands

TL;DR: In this paper, three mono oxovanadium(V) complexes of tridentate Schiff base ligands were obtained by monocondensation of 3-hydroxy-2-naphthohydrazide and aromatic o-hydroxaldehydes, and the catalytic potential of these complexes was tested for the oxidation of cyclooctene using H2O2 as the terminal oxidant.
Journal ArticleDOI

Synthesis, characterisation and catalytic potential of hydrazonato-vanadium(V) model complexes with [VO]3+ and [VO2]+ cores.

TL;DR: The anionic complexes 3 and 6 catalyse the oxidative bromination of salicylaldehyde in water in the presence of H2O2/KBr to 5-bromosalicyl ethanol and 3,5-dibromosaliylaldehyde, a reaction similar to that exhibited by vanadate-dependent haloperoxidases.
Journal ArticleDOI

Dioxovanadium(v) complexes of ONO donor ligands derived from pyridoxal and hydrazides: Models of vanadate-dependent haloperoxidases

TL;DR: In this paper, the crystal and molecular structures of ligand I and complex 3 have been solved by single-crystal X-ray diffraction, and the anion 3 is in a distorted tetragonal-pyramidal environment (τ = 0.23).
Journal ArticleDOI

Design of vanadium mixed-ligand complexes as potential anti-protozoa agents.

TL;DR: In the search for new therapeutic tools against Chagas' disease (American Trypanosomiasis) four novel mixed-ligand vanadyl complexes, including a bidentate polypyridyl DNA intercalator and a tridentate salycylaldehyde semicarbazone derivative as ligands were synthesized, characterized by a combination of techniques and in vitro evaluated.
References
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Journal ArticleDOI

The coordination chemistry of vanadium as related to its biological functions

TL;DR: The binding of vanadium to protein side-chains such as provided by tyrosinate, serinate, aspartate, glutamate, cysteinate, methionine and histidine is modelled by complexes with ligand sets containing phenolate, alkoxide, carboxylates, thiolate, thioether and enamine functions.
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