@article{Maurya2025, 
author = {Oshnik Maurya and Vaibhav Khapekar and Kanchan Pawar and Somnath Khaladkar and Girish Kamble and Harsh Mohane and Girish Gund and Bhavesh Sinha and Jin Hyeok Kim and Rajendra Deshmukh and Deepak Dubal and Archana Kalekar},
title = {Visible light sensitive bismuth vanadate for energy, environmental, and catalytic applications},
year = {2025},
journal = {Nano Research},
volume = {18},
number = {6},
pages = {94907364},
keywords = {bismuth vanadate, CO2 and N2 reduction, hydrogen production, photocatalysis},
url = {https://www.sciopen.com/article/10.26599/NR.2025.94907364},
doi = {10.26599/NR.2025.94907364},
abstract = {To achieve the net zero emission dream, developing green and sustainable materials and processes to extract energy and address environmental issues is paramount. Recently, the production of green hydrogen through light-assisted methods has attracted the attention of scientists and researchers. However, the design and development of semiconducting materials with suitable band structures to utilize solar spectrum, high stability, and low cost are significant roadblocks. Among various materials, bismuth vanadate (BiVO4) is emerging as a low-cost, visible-light-active, and easy-to-synthesize material. This review highlights the unique features of BiVO4, such as its structural, electronic, and optical properties, which define its role in hydrogen production through photocatalytic and photoelectrochemical water splitting. Later, we outlined how BiVO4 and its derivatives can be used for wastewater treatment in the textile, pharmaceutical, and chemical industries. The impact of morphological and structural properties of photocatalytic BiVO4 in microbial inactivation, N2 fixation, and CO2 reduction has also been comprehensively explored. The review concludes with strategies to mitigate photo-corrosion and provides future directions for using BiVO4 in clean energy and environmental applications.}
}