Corrigendum to "Temperature of photoanode for photoelectrochemical water oxidation"
Solar-light-driven photoelectrochemical that can utilize water for high-performance artificial photosynthesis for low-cost green hydrogen fuel production. However, the interaction of photoanode with water is crucial to its heterogeneous water oxidation for sustainable fuel production for the replacement of fossil fuels. Here, we report experiment investigations of photoelectrode with temperature for solar energy conversion. These measurements revealed that a rise in temperature affects the catalytic generation of hydrogen in three routes, viz., minimizing the required energy for water splitting, reducing bandgap energy and mitigating the resistance at the interface.
Excellence is Our Specialty
How all this mistaken idea of denouncing pleasure and praising pain was born and I will give
you a complete account of the system, and expound the actual teachings.
A distinguished Assistant Professor of Chemistry with over 10 years of undergraduate
teaching experience and 4 years in postgraduate education. I hold a Ph.D. in Chemistry
from IIT Delhi.