2D Materials for Electrochemical Water Splitting



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Springer


Paru le : 2026-01-01



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Description

This book highlights the advancement of 2D materials and their composites for electrochemical water splitting. It explores fundamental aspects such as the structure, synthesis, and chemical diversity of various 2D materials (TMDCs, TMTCs, MXenes, Borophenes, MBenes, Graphene and Graphdiyne) with a viewpoint for water splitting. The book also covers designing strategies to integrate an electrocatalyst for both HER and OER. The book also presents detailed computational insights into electrochemical water splitting. The current state of 2D material-based water splitting technologies, as well as the challenges faced while scaling them up, is addressed. The book also provides a comprehensive look at the integration of 2D materials into water-splitting devices. Additionally, the book offers a broad overview of 2D materials for electrochemical water splitting from a global perspective. This book will serve as a valuable resource for scientists, engineers, research scholars, and graduate students specializing in electrochemical water splitting.
Pages
382 pages
Collection
n.c
Parution
2026-01-01
Marque
Springer
EAN papier
9789819520022
EAN PDF
9789819520039

Informations sur l'ebook
Nombre pages copiables
3
Nombre pages imprimables
38
Taille du fichier
31498 Ko
Prix
189,89 €
EAN EPUB
9789819520039

Informations sur l'ebook
Nombre pages copiables
3
Nombre pages imprimables
38
Taille du fichier
79473 Ko
Prix
189,89 €

Dr. O. P. Pandey obtained his Ph.D. from the Department of Metallurgical Engineering, IIT, BHU. His research interests are in the areas of Undercooling, Powder Metallurgy, Rapid Solidification, Spray Deposition, Heat Treatment, Glass Ceramic, Magnetic Materials, Nanomaterials, Composites, 2D Materials, Electrochemistry and Photocatalysis.

 

Dr. Piyush Sharma received his Ph.D. from the Thapar Institute of Engineering and Technology, Patiala, India. His research interests are in the areas of 2D MXenes, 2D MBenes, MAX phases, MAB phases, Electrochemistry, Photocatalysis, Thermal Oxidation, Thermal Kinetics and Heat treatment. 

 

Dr. Shagun Kainth received his Ph.D. from the Thapar Institute of Engineering and Technology, Patiala, India. Her research interests are in the areas of Carbon Dots synthesis (colloidal and solid state), 2D materials, and their functionalization for Sensing, Anticancer, Electrochemistry, and Forensic applications.

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