The aim is to develop a scalable method for synthesizing 2D metal selenides that can be used in solar hydrogen production.
Established approach harnessing cation exchange for synthesis of 2D MSe nanostructures.
Focused on scalability and tunability in the synthesis process.
Successfully synthesized 2D metal selenides, enhancing their potential as photocatalysts.
Demonstrated applicability in solar-to-hydrogen energy conversion.
Abstract
. This work establishes a scalable and tunable approach for the synthesis of 2D MSe nanostructures, paving the way for advanced photocatalysts in solar-to-hydrogen energy conversion.