Maiyalagan / Khandelwal | Biomass-Derived Carbon Materials for Energy Storage and Conversion Applications | Buch | 978-1-032-86525-6 | www.sack.de

Buch, Englisch, 350 Seiten, Format (B × H): 156 mm x 234 mm, Gewicht: 453 g

Maiyalagan / Khandelwal

Biomass-Derived Carbon Materials for Energy Storage and Conversion Applications


1. Auflage 2026
ISBN: 978-1-032-86525-6
Verlag: Taylor & Francis Ltd

Buch, Englisch, 350 Seiten, Format (B × H): 156 mm x 234 mm, Gewicht: 453 g

ISBN: 978-1-032-86525-6
Verlag: Taylor & Francis Ltd


Biomass-Derived Carbon Materials for Energy Storage and Conversion Applications delves into this burgeoning field and addresses the pressing need for sustainable and cost-effective carbon sources. Highlighting biomass’s unique advantages of cost-effectiveness, sustainability, and adjustable properties, it explores the various applications of carbon nanomaterials in energy storage and conversion. Divided into four parts, this book comprehensively examines biomass availability, synthetic protocols, structural engineering techniques, and characterization methods, offering insights into the design principles and applicability of these materials for supercapacitors, batteries, and electrocatalytic reactions. It serves as a useful reference for researchers, professionals, academicians, and postgraduate/graduate students in the field.

Specifically, this book:

- Discusses biomass availability, sustainability, synthetic protocols, structural engineering techniques, and characterization methods, offering a holistic view of the field.

- Examines the potential for biomass-derived carbon materials to enhance energy efficiency and reliability.

- Presents strategies for advancing sustainable energy technologies and improving global quality of life.

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Weitere Infos & Material


Chapter 1 Introduction to Biomass-derived Carbon Materials

Kirti Bhardwaj, Aakriti Banjariya, Manisha Sharma and Sanjeev Kumar Sharma

Chapter 2 Recent advancements in the synthesis and characterization of biomass-derived carbon materials for electrochemical performances

Venkadeshkumar Ramara, Sivakumar Periyasamyb, Prabhu Sengodanc and Shihua Huanga

Chapter 3 Biomass-derived carbon/transition metal oxide composites as cathode materials for Aqueous Zn-ion Batteries and hybrid supercapacitors

Anjeline Williams, Aneesh Anand Nechikott and Prasant Kumar Nayak

Chapter 4 Heteroatom doped Biomass Derived Carbon and its Composites as Air Electrodes for Metal–Air Batteries

J. M. V. Nsanzimanaa, N. Durga Srib and T. Maiyalaganb

Chapter 5 Modification of biomass-derived carbon materials through heteroatom doping for energy storage applications

Radhakrishnan Sivakumar

Chapter 6 Biomass-derived carbon materials for water splitting

Mumtaz Alia, Xiangyu Caoa, In Choia and Min Jae Koa

Chapter 7 Biomass-derived Carbon-based Non-Platinum Catalysts for Oxygen Reduction Reaction in Fuel Cells

Snigdha Toms, E.Mary Allan Stafani, and Imran Jafri R

Chapter 8 Sustainable Biomass-derived Carbon Based Electrodes for Aluminium-ion Batteries

Thangavel Selvamania, Michael Ruby Raja, D.Gangadharanc, B. Neppolianb, and Gibaek Leea

Chapter 9 Biomass-based carbon materials in electrochemical reduction of carbon dioxide

Manisha Sharmaa, Kirti Bhardwaja, Anshika Guptaa,b, and Sanjeev Kumar Sharma

Chapter 10 Biomass-Derived Carbon Nanomaterials for High-Performance Secondary Metal-Ion Battery Anodes

Tanisha Mavjekar and T. Maiyalagan

Chapter 11 Biomass-derived carbon nanomaterials for Dye-Sensitised Solar Cells

A.Manjceevan and K.Velauthamurty

Chapter 12 Modification of Biomass-Derived Carbon Materials through Heteroatom Doping for Photochemical and Electrochemical Reduction of Carbon Dioxide

Takumi Nagasaka, Sredha J Nair and G. Keerthiga


Professor Thandavarayan Maiyalagan received his PhD in Physical Chemistry from the Indian Institute of Technology, Madras, and completed postdoctoral programs at Newcastle University (UK), Nanyang Technological University (Singapore), and The University of Texas, Austin (USA). Presently, he is a Professor of Chemistry at SRM Institute of Science and Technology, India. His main research interests focus on the design and development of electrode nanomaterials for energy conversion and storage applications, particularly fuel cells, supercapacitors, and batteries. His research and collaborations have resulted in 390 papers in peer-reviewed publications (with 21596 citations and an h-index of 71), and he has edited five books. He received the “Sir C.V. Raman Scientist Award 2019” in Science and Technology from St. Peter’s Institute of Higher Education and Research, and Young Scientist Awards for the year 2017 from the Academy of Sciences, Chennai. He has been invited to present his work at various international and national meetings.

Dr. Mahima Khandelwal received her PhD degree from Indian Institute of Technology Roorkee, India. Dr. Khandelwal completed her Bachelor’s and Master’s degrees in Chemistry at the University of Delhi, New Delhi, India. She subsequently worked as a postdoctoral researcher and later as a research professor at several institutions in South Korea. Currently, Dr. Khandelwal is a Marie Sklodowska-Curie Individual Postdoctoral Fellow at the Czech Advanced Technology and Research Institute (CATRIN), Palacky University Olomouc. Her research interests focus on the synthesis and surface modification of carbon-based nanomaterials, two-dimensional transition metal dichalcogenides, and non–van der Waals chalcogenides for energy storage and conversion applications. Dr. Khandelwal has published more than 25 peer-reviewed research articles (>1050 citations; h-index of 18) in reputed international journals.



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