Each chapter introduces important properties and material design strategies, including composite and morphology design. There is also an emphasis on cost-effective materials design and fabrication for optimized performance for electrocatalytic water splitting applications. Lastly, the book touches on recently developed in-situ characterization methods applied to observe and control the material synthesis process.
- Introduces metal oxide-based materials for electrocatalytic water splitting applications, including their key properties, synthesis, design and fabrication strategies
- Reviews the most relevant materials design strategies, including defect engineering, interface engineering, and doping engineering
- Discusses the pros and cons of metal oxide-based materials for water splitting applications to aid in materials selection
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