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Updated: Jun 28, 2025

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Published on: December 6, 2021
Enhancement of NiTiO3 piezocatalytic hydrogen evolution by doping with large radius elements
Kongming Li1, Bonan Li1, Xi Zhang1
1State Key Laboratory of Applied Organic Chemistry, Key Laboratory of Advanced Catalysis of Gansu Province, College of Chemistry and Chemical Engineering, Lanzhou University, Lanzhou 730000, Gansu, China. dingyong1@lzu.edu.cn.
This study introduces NiTiO3 for piezocatalytic hydrogen production. Doping with cadmium significantly boosts hydrogen generation, showing great potential for clean energy applications.
Area of Science:
- Materials Science
- Catalysis
- Renewable Energy
Background:
- Piezocatalysis offers a direct route to convert mechanical energy into chemical energy.
- Developing efficient catalysts is crucial for sustainable hydrogen production.
- NiTiO3 is explored for piezocatalytic applications for the first time.
Purpose of the Study:
- To investigate the potential of NiTiO3 in piezocatalytic hydrogen evolution.
- To enhance the piezoelectric properties of NiTiO3 through doping.
- To evaluate the hydrogen generation rate of doped NiTiO3 materials.
Main Methods:
- Synthesis of NiTiO3 and its doped variants.
- Characterization of crystal structure and piezoelectric response.
- Measurement of hydrogen gas evolution under mechanical vibration.
Main Results:
- NiTiO3 exhibits piezocatalytic activity for hydrogen evolution.
- Doping with large radius elements, particularly Cadmium (Cd), enhances noncentral symmetry and piezoelectric response.
- Cd-doped NiTiO3 achieved a hydrogen generation rate of 1.52 mmol g-1 h-1, a 13-fold increase over pristine NiTiO3.
Conclusions:
- NiTiO3 is a promising material for piezocatalytic hydrogen production.
- Doping strategies can effectively improve the performance of piezocatalysts.
- Cd-doped NiTiO3 demonstrates significant potential for efficient and sustainable hydrogen generation.
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