article · Hybrid Advances
In this study, we investigated the synthesis of vanadate-based glasses with the following compositions: 50V 2 O 5 –50P 2 O 5 , 50V 2 O 5 –25P 2 O 5 –25BaO, and 50V 2 O 5 –50BaO. The glass network structure was analyzed using various analytical techniques, including Fourier transform infrared spectroscopy and X-Ray Photoelectron Spectroscopy, which provided insights into the bonding and coordination of the components. Vanadium in these glasses exists in two oxidation states, V 4+ and V 5+ , and forms V–O–V, V–O–P, and V–O–Ba bridges. Electrochemical analysis using cyclic voltammetry on a platinum electrode in 1.0 M HCl was conducted to explore the redox behaviour of the V 5+ /V 4+ couple. Finally, corrosion inhibition properties were assessed on mild steel in the same acidic medium, providing a comprehensive evaluation of the materials' performance in a practical context. Thus, for 250 ppm of inhibitor, the glass composition of 50V 2 O 5 –50P 2 O 5 exhibits inhibition efficiencies of 97.7% and 92.2% for the two media 1.0 M and 5.0 M, respectively. Its mode of action is explained by electrochemical analyses and surface analyses.
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DOI: 10.1016/j.hybadv.2025.100584
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