This book highlights a multidisciplinary system for the future while protecting our environment. Certainly, the main objective of the proposed book has addressed several issues and bringing a good platform to understanding for future developments in metal oxide nanostructures for energy conversion, biomedical, and environmental management, however, which is support/carrier for antibacterial behaviors, pathogen infections, and bioinspired materials for energy savings and environmental impacts. Appropriately, I recommend the book to undergraduates, postgraduates, and doctoral students those who are working in materials science and researchers across the world working in interdisciplinary research.
This book highlights a multidisciplinary system for the future while protecting our environment. Certainly, the main objective of the proposed book has addressed several issues and bringing a good platform to understanding for future developments in metal oxide nanostructures for energy conversion, biomedical, and environmental management, however, which is support/carrier for antibacterial behaviors, pathogen infections, and bioinspired materials for energy savings and environmental impacts. Appropriately, I recommend the book to undergraduates, postgraduates, and doctoral students those who are working in materials science and researchers across the world working in interdisciplinary research.
Kaviyarasu Kasinathan
Semiconductor Heterostructures Photoelectrochemical Water Splitting Photocatalytic Behaviour Nanocomposites for Water Purification Uv Light Absorbance Photovoltaic Applications Thermoelectric Materials for Energy Harvesting Electrochemical Energy Storage Perovskite Nanomaterials Supercapacitors for Energy Storage Device Different Antibacterial Strains Antimicrobial Activity Antimicrobial Agents