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Updated: Sep 2, 2025

Preparation of Silver-Palladium Alloyed Nanoparticles for Plasmonic Catalysis under Visible-Light Illumination
Published on: August 18, 2020
Plasmonic Metal/Semiconductor Heterostructure for Visible Light-Enhanced H2 Production
Shomaila Khanam1, Sanjeeb Kumar Rout1
1Department of Physics, Birla Institute of Technology, Mesra, Ranchi, Jharkhand 835215, India.
A novel plasmonic silver/bismuth tungstate (Ag/Bi2WO6) heterostructure significantly boosts photocatalytic activity for ammonia borane dehydrogenation. This Ag/Bi2WO6 composite shows eight times higher performance than pure Bi2WO6 under visible light.
Area of Science:
- Materials Science
- Nanotechnology
- Photocatalysis
Background:
- Developing efficient photocatalysts is crucial for sustainable energy and environmental applications.
- Bismuth tungstate (Bi2WO6) shows promise but often suffers from limited visible light absorption and charge carrier recombination.
- Plasmonic metal nanoparticles can enhance semiconductor photocatalytic activity through various mechanisms.
Purpose of the Study:
- To synthesize and characterize a plasmonic Ag/Bi2WO6 heterostructure.
- To investigate the photocatalytic activity of the Ag/Bi2WO6 composite for ammonia borane dehydrogenation under visible light.
- To elucidate the role of localized surface plasmon resonance (LSPR) and synergistic effects in enhancing photocatalysis.
Main Methods:
- Hydrothermal and photodeposition methods were employed to synthesize the Ag/Bi2WO6 heterostructure.
- The composite's properties, including visible light absorption and photoabsorption, were analyzed.
- Photocatalytic activity was evaluated through the dehydrogenation of ammonia borane (NH3BH3) solution under visible light irradiation.
Main Results:
- The synthesized Ag/Bi2WO6 composite exhibited strong visible light absorption due to LSPR.
- The Ag/Bi2WO6 heterostructure demonstrated significantly enhanced photocatalytic activity, approximately eight times higher than pure Bi2WO6 nanosheets.
- The enhanced performance was attributed to the synergetic effect between Ag nanoparticles and W5+ ions, improved electrical conductivity, and reduced charge carrier recombination.
Conclusions:
- The plasmonic Ag/Bi2WO6 heterostructure is a highly efficient photocatalyst for ammonia borane dehydrogenation under visible light.
- The integration of LSPR from Ag nanoparticles effectively enhances the photocatalytic properties of Bi2WO6.
- This study highlights the potential of fabricating plasmonic metal/semiconductor heterostructures for advanced photocatalytic applications.
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