Recent Advances in Graphene and Graphene-Based Technologies

Author:   Anoop Chandran ,  N. V. Unnikrishnan ,  Reenu Elizabeth John ,  Justin George
Publisher:   Institute of Physics Publishing
ISBN:  

9780750339971


Pages:   514
Publication Date:   15 June 2023
Format:   Hardback
Availability:   In Print   Availability explained
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Recent Advances in Graphene and Graphene-Based Technologies


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Hailed as the wonder material of the 21st century, graphene presents a wide range of possibilities in terms of its technological and industrial uses. This reference text provides a comprehensive review of the recent advances in graphene-based research and technology. The book combines the necessary background and theory alongside a broad spectrum of cutting-edge applications of graphene and its types. Recent advances, including electronic, photonic, optoelectronic and sensing applications, and membranes and coatings, are presented in detail. Special chapters are devoted to the most contemporary attributes of graphene, mainly its metamaterial, magnetic and non-linear properties. The book concludes with a discussion of future prospects of graphene-based research. Aimed at both advanced researchers and those new to the field, the book is suitable for research scholars, scientists, teachers and the wider academic community. Key Features Provides a comprehensive review of recent advances in graphene-based research and technology Covers developments such as magnetism in graphene, graphene metamaterials and membranes and coatings Combines the necessary background, theory, and cutting-edge applications of graphene and its types Explores the latest synthesis techniques including CVD and the novel high yield exfoliation method Covers electronic, photonic, optoelectronic and sensing applications in detail

Full Product Details

Author:   Anoop Chandran ,  N. V. Unnikrishnan ,  Reenu Elizabeth John ,  Justin George
Publisher:   Institute of Physics Publishing
Imprint:   Institute of Physics Publishing
Dimensions:   Width: 17.80cm , Height: 3.80cm , Length: 25.40cm
ISBN:  

9780750339971


ISBN 10:   0750339977
Pages:   514
Publication Date:   15 June 2023
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   In Print   Availability explained
This item will be ordered in for you from one of our suppliers. Upon receipt, we will promptly dispatch it out to you. For in store availability, please contact us.

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Prof. Anoop Chandran is an assistant professor in the department of physics at St. Cyril’s College, India. He was awarded his Ph.D. in 2015 for his work on 1D semiconductor nanomaterials and was awarded the Dr. D. S. Kothari Postdoctoral Fellowship for his proposal on semiconductor-CNT/graphene hybrids. He has many publications in reputed international journals including the Journal of Applied Physics, Applied Surface Science, Physical Chemistry and Chemical Physics. Prof. N. V. Unnikrishnan is a visiting professor at Mahatma Gandhi University, India. He has completed ten major projects funded by agencies including UGC, CSIR, DAE-DRNS and TWAS, and published 236 research papers in international journals. He is a member of the American Chemical Society and a referee of many internationally reputed journals. Prof. M. K. Jayaraj is the vice chancellor of the University of Calicut, India. He received his Ph.D. in physics from CUSAT in 1990. He was a visiting scientist to ENEA, Italy, in 1994–95 and received a European Commission fellowship to work at the University of Pierre et Marie Curie from 1995–96. He has more than 220 publications to his credit. Mr. Justin George is a Ph.D. fellow at the University of Auckland under the supervision of distinguished professor Debes Bhattacharyya. He is currently working on a project to fabricate novel-carbon based composites for sensing and energy applications. Prof. Reenu Elizabeth John is an assistant professor of physics at Saintgits College of Engineering, India. She obtained her Ph.D from St. Berchmans College for her work on 1D transition metal oxides.

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