In consequence of its specialness and outstanding features in domains including physics, chemistry, biology, and medicine, nano crystalline vanadate materials have drawn a lot of interest. In particular, vanadium (V)-based nanomaterials are of interest because vanadium is inexpensive and has a number of valence states, including V2+, V3+, V4+, and V5+. Among the several types of nano hybrid vanadate, vanadium oxides, vanadium nitrides, vanadium sulfides, and mixed metal vanadates are the most common. The peculiar qualities of these compounds are present. Additionally, new developments in the synthesis and electrochemical activity of V-based nanomaterials for batteries, supercapacitors, applications will be reviewed in the context of synthetic methodologies, Nanocomposite morphologies, and electrochemical performances. We used a straightforward chemical combustion approach to create hybrid BaZnV2O5 in this study. The synthesized product. BaZnV2O5 nanoparticles were examined using XRD, FTIR, SEM, EDAX, UV-DRS analysis, and electrochemical studies for structural confirmation.