About
Exhausting fossil fuel reserves necessitates a harsh revolution from non-renewable energy reservoirs to renewable energy reservoirs with zero carbon emission.
In the present scenario, solar energy prompted photoelectrochemical water splitting or “Artificial Photosynthesis” via light gripping semiconductor material, originates out as the most promising methodology in accomplishing the global energy crisis.
Thus, I am designing a novel semiconductor material for solar hydrogen generation.
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Publications (8)
- India's Battery Standards: Forging Energy Security in Extreme Climates Save
- Role of thermal annealing in fabrication of bismuth ferritethin films for photoelectrochemical water splitting Save
- Temperature of photoanode for photoelectrochemical water oxidation Save
- The impact of electrolytic pH on photoelectrochemical water oxidation Save
- Role of electrolytic pH on the performance of nanostructured partially crystalline Nitrogen-doped Titanium Dioxide thin films in photoelectrochemical water splitting Save
- Role of varying ionic strength on the photoelectrochemical water splitting efficiency Save
- MOFs in photoelectrochemical water splitting: New horizons and challenges Save
- N–TiO2 crystal seeds incorporated in amorphous matrix for enhanced solar hydrogen generation: Experimental & first-principles analysis Save