Polyoxometalate-Based Materials and Applications focuses on the recent progress in polyoxometalate-based materials for various electrochemical and biomedical applications. First, the structure, composition, classification, and properties of POMs-based materials are introduced. Then, their design for energy applications such as supercapacitors, batteries, hydrogen production are discussed. Finally, their use in biomedical (antibacterial, antiviral, cancer prevention/treatment) and sensing applications are reviewed. Polyoxometalate-based Materials and Applications is suitable for materials scientists and engineers, chemists, and chemical engineers.…mehr
Polyoxometalate-Based Materials and Applications focuses on the recent progress in polyoxometalate-based materials for various electrochemical and biomedical applications. First, the structure, composition, classification, and properties of POMs-based materials are introduced. Then, their design for energy applications such as supercapacitors, batteries, hydrogen production are discussed. Finally, their use in biomedical (antibacterial, antiviral, cancer prevention/treatment) and sensing applications are reviewed. Polyoxometalate-based Materials and Applications is suitable for materials scientists and engineers, chemists, and chemical engineers.
1. Introduction of POMs - Structural diversity 2. Redox active molecular clusters as potential materials for supercapacitors 3. POMs as liquid electrolytes for redox flow batteries 4. Role of POMs in Li-ion batteries - Recent advancements 5. POMs-based electrodes for Post-Li ion batteries 6. Engineering of POM-based materials for photo-/electro-catalysis 7. Development of PO Ms for CO2 reduction reactions 8. POMs for production of ammonia through nitrogen reduction reactions 9. Potential of POMs in biomedicinal applications 10. POMs-based materials for sensor systems 11. Understanding the fundamental aspects of the electrochemical application using theoretical/computational (DFT or ML) approach
1. Introduction of POMs - Structural diversity 2. Redox active molecular clusters as potential materials for supercapacitors 3. POMs as liquid electrolytes for redox flow batteries 4. Role of POMs in Li-ion batteries - Recent advancements 5. POMs-based electrodes for Post-Li ion batteries 6. Engineering of POM-based materials for photo-/electro-catalysis 7. Development of PO Ms for CO2 reduction reactions 8. POMs for production of ammonia through nitrogen reduction reactions 9. Potential of POMs in biomedicinal applications 10. POMs-based materials for sensor systems 11. Understanding the fundamental aspects of the electrochemical application using theoretical/computational (DFT or ML) approach
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