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Mononuclear/Binuclear [VO]/[VO] Complexes Derived from 1,3-Diaminoguanidine and Their Catalytic Application for the Oxidation of Benzoin Via Oxygen Atom Transfer

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Journal ACS Omega
Specialty Chemistry
Date 2023 Jan 16
PMID 36643530
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Abstract

Ligands Hsal-dag () and HBrsal-dag () derived from 1,3-diaminoguanidine and salicylaldehyde or 5-bromosalicylaldehyde react with one or 2 mol equivalent of vanadium precursor to give two different series of vanadium complexes. Thus, complexes [VO(Hsal-dag) (HO)] () and [VO(HBrsal-dag) (HO)] () were isolated by the reaction of an equimolar ratio of these ligands with [VO(acac)] in MeOH. In the presence of K/Cs ion and using aerially oxidized [VO(acac)], the above reaction gave complexes [K(HO){VO(Hsal-dag)}] (), [Cs(HO){VO(Hsal-dag)}] (), [K(HO){VO(HBrsal-dag)}] (), and [Cs(HO){VO(HBrsal-dag)}] (), which could also be isolated by direct aerial oxidation of complexes and in MeOH in the presence of K/Cs ion. Complexes [(HO)VO(Hsal-dag)VO] () and [(HO)VO(HBrsal-dag)VO] () were isolated upon increasing the ligand-to-vanadium precursor molar ratio to 1:2 under an air atmosphere. When and were reacted with aerially oxidized [VO(acac)] in a 1:2 molar ratio in MeOH in the presence of K/Cs ion, they formed [K(HO){(VO)(Hsal-dag)}] (), [Cs(HO){(VO)(Hsal-dag)}] (), [K(HO){(VO)(Brsal-dag)}] (), and [Cs(HO){(VO)(Brsal-dag)}] (). The structures of complexes , , , and determined by single-crystal X-ray diffraction study confirm the mono-, bi-, tri-, and tetra-anionic behaviors of the ligands. All complexes were found to be an effective catalyst for the oxidation of benzoin to benzil via oxygen atom transfer (OAT) between DMSO and benzoin. Under aerobic condition, this oxidation also proceeds effectively in the absence of DMSO. Electron paramagnetic resonance and V NMR studies demonstrated the active role of a stable V(IV) intermediate during OAT between DMSO and benzoin.

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