Sharma / Chauhan | Smart Catalysts for a Changing World | Buch | 978-3-032-23517-6 | www.sack.de

Buch, Englisch, 308 Seiten, Format (B × H): 155 mm x 235 mm

Reihe: Engineering Materials

Sharma / Chauhan

Smart Catalysts for a Changing World

Multiferroic Nanostructured Materials for Cleaner Technologies
Erscheinungsjahr 2026
ISBN: 978-3-032-23517-6
Verlag: Springer

Multiferroic Nanostructured Materials for Cleaner Technologies

Buch, Englisch, 308 Seiten, Format (B × H): 155 mm x 235 mm

Reihe: Engineering Materials

ISBN: 978-3-032-23517-6
Verlag: Springer


This book explores the role of catalysis in enabling cleaner, more sustainable technologies across energy, environmental, and industrial sectors. Catalysis is foundational to modern civilization, influencing everything from fuel production and pollution control to pharmaceuticals and food processing. As the global community faces escalating environmental challenges and the urgent need for climate action, the development of intelligent and responsive catalytic systems has become a scientific and technological priority.

This book provides a comprehensive and forward-looking overview of the latest advances in smart catalysis, with a strong emphasis on materials design, catalytic mechanisms, and real-world applications. It highlights the emerging field of piezocatalysis, where materials like BiFeO3, BaTiO3, ZnO, and novel structures such as layered transition metal dichalcogenides and metal-organic frameworks exhibit enhanced charge separation through piezoelectric effects. These innovations are directly aligned with several United Nations Sustainable Development Goals (SDGs), including clean water, affordable energy, responsible production, and climate action.

Structured across multiple chapters authored by leading experts, the book begins with foundational principles of catalysis and progresses through advanced topics such as multiferroic nanostructured materials, hybrid catalytic systems, and stimuli-responsive catalyst design. It explores cutting-edge fabrication techniques, theoretical modeling using density functional theory (DFT), and the integration of machine learning and AI in catalyst discovery. Applications span environmental remediation, dye and antibiotic degradation, CO2 reduction, and the development of flexible, wearable, and self-powered catalytic systems.

By combining theoretical insights with practical case studies and future perspectives, this book serves as a vital resource for researchers, engineers, and students working at the intersection of materials science, catalysis, and sustainable technology.

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Zielgruppe


Research

Weitere Infos & Material


Introduction to Smart Catalysis.- Design Principles of Smart Catalysts.- Multiferroic Nanostructured Materials.- Single-phase, Composite, Heterostructured, and Thin Film Multiferroics Synthesis and Fabrication Techniques.- Theoretical Simulations and Computational Modeling in Smart Catalysis.- Multiferroics Photocatalysts for Dyes and Antibiotics Degradation.- Multiferroic Photopiezo Catalysts for Dyes and Antibiotics Degradation.- Multiferroic Catalytic Water Splitting for Hydrogen Generation.- Multiferroic Materials for CO2 Reduction and Conversion Technologies.- Future Perspectives and Emerging Directions in Smart Catalysis.


Dr. Subhash Sharma is Accomplished Materials Scientist with over a decade of research experience in multifunctional materials, specializing in energy and environmental applications. He holds a Ph.D. and M.Tech. in physics and materials science and has completed Prestigious NPDF Postdoctoral Fellowship at the Department of Physics, Banaras Hindu University (BHU). His academic and research journey includes collaborations with leading international laboratories focused on advanced materials for sustainable technologies.

Currently, Dr. Sharma serves as a Cátedras Researcher at UNAM–CNyN under the SCIHTI Program in Mexico, where he leads several nationally and internationally significant research and development (R&D) projects. He also contributes as Expert Member for SCIHTI, evaluating high-impact scientific proposals. His research portfolio includes pioneering work on multiferroic nanomaterials for green energy, RF-sputtered nanostructured heterostructures for memory and energy devices, and perovskite-based photovoltaics.

Dr. Sharma has authored over 80 peer-reviewed publications, 10 book chapters, and 2 books, with an h-index of 20 and an i10-index of 32.



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