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Arun Kumar (Hrsg.) Singh

Carrier Modulation in Graphene and its Applications

Ebook (EPUB Format)

Graphene has many unique properties that have generated tremendous excitement in the scientific community and make graphene appropriate for many applications. The tuning of graphene's Fermi level by modulation of charge carriers in graphene is an important factor in determining the successful operation of electronic/optoelectronic devices. This book focuses on different methods of performing carrier modulation in graphene and the application of this doped graphene in diodes, field effect transistors, solar cells, transparent conducting electrodes, and supercapcitors. The book gives an overview of the current status of the research and develop… Mehr

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Produktdetails


  • ISBN: 978-1-00-036823-9
  • EAN: 9781000368239
  • Produktnummer: 35225208
  • Verlag: Taylor & Francis Ltd.
  • Sprache: Englisch
  • Erscheinungsjahr: 2021
  • Seitenangabe: 300 S.
  • Plattform: EPUB

Über den Autor


Arun Kumar Singh is associate professor at the Department of Pure and Applied Physics, Guru Ghasidas Vishwavidyalaya, India. He received his MSc in physics from Banaras Hindu University (BHU), India, and PhD from the School of Materials Science and Technology, IIT BHU. After his PhD, he began postdoctoral research work at the Graphene Research Institute, Sejong University, South Korea. In 2013, he got India's most prestigious research INSPIRE Faculty award from the Department of Science and Technology, India, and many other fellowships and awards from different scientific societies. He worked as assistant professor (INSPIRE faculty) at the Department of Physics, Motilal Nehru National Institute of Technology Allahabad, India. Dr. Singh has authored or co-authored more than 75 articles in international journals and conferences in the areas of materials science and physics. He is also a life member of many scientific societies and a reviewer for many international scientific journals. His research work focuses on the fabrication and characterizations of organic semiconductors/2D nanomaterials for electronics device applications.

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