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Updated: Sep 22, 2025

Atomic Layer Deposition of Vanadium Dioxide and a Temperature-dependent Optical Model
Published on: May 23, 2018
Studies on the interaction between oxido/dioxidovanadium(V) compounds and reactive oxygen species: Synthesis,
Riya Ghosh1, Snehasish Debnath1, Arnab Bhattacharya2
1Analytical & Environmental Science Division and Centralized Instrument Facility, CSIR-CSMCRI, G. B. Marg, Bhavnagar, Gujarat, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, India.
Abstract:
Singlet oxygen (1O2) and hypochlorite (OCl-) are two principal non-radical reactive oxygen species (ROS) which, are produced in a number of biochemical processes. In cellular systems, these analytes play various important roles. In this article, we report two mononuclear oxido- and dioxidovanadium(V) compounds 1 and 2 of an intramolecularly hydrogen bonded luminescent zwitterion ligand (HL). Single crystal X-ray diffraction analysis and multinuclear (1H and 51V) NMR spectroscopy provided the identities of 1 and 2 in the solid and solution states, respectively. Both 1 and 2 are water soluble and fluorescent. Fluorescence of the ligand HL is responsible for the fluorescent nature of 1 and 2. Protonation of the hanging amine moiety of the ligand remained unchanged in the vanadium complexes 1 and 2. However, the intramolecular H-bonding is not present in 1 and 2. Hydrophilicity and luminescent nature of the vanadium complexes provided us the opportunity to study the interaction of 1 and 2 with different ROS. Excited state photophysical investigations revealed highly selective instant response of the probes 1 and 2 for singlet oxygen and hypochlorite. Specific response of the dioxidovanadium(V) complex 1 towards singlet oxygen/hypochlorite remained unchanged in presence of other challenging ROS. Spectrofluorimetric titration provided limit of detection around 180 nM for 1O2. 1H NMR and theoretical calculations provided further information on the interactions between vanadium compound and analyte.
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