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Graphene Science Handbook: Mechanical and Chemical Properties

by Mahmood Aliofkhazraei
Save 35% Save 35%
Current price ₹21,997.00
Original price ₹33,841.00
Original price ₹33,841.00
Original price ₹33,841.00
(-35%)
₹21,997.00
Current price ₹21,997.00

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Book cover type: Hardcover
  • ISBN13: 9781466591233
  • Binding: Hardcover
  • Subject: N/A
  • Publisher: Taylor & Francis
  • Publisher Imprint: CRC Press
  • Publication Date:
  • Pages: 544
  • Original Price: GBP 265.0
  • Language: English
  • Edition: N/A
  • Item Weight: 1570 grams
  • BISAC Subject(s): Physics / Condensed Matter, Materials Science / General, and Chemistry / Organic

An In-Depth Look at the Outstanding Properties of Graphene

The Graphene Science Handbook is a six-volume set that describes graphene's special structural, electrical, and chemical properties. The book considers how these properties can be used in different applications (including the development of batteries, fuel cells, photovoltaic cells, and supercapacitors based on graphene) and produced on a massive and global scale.

Volume One: Fabrication Methods

Volume Two: Nanostructure and Atomic Arrangement

Volume Three: Electrical and Optical Properties

Volume Four: Mechanical and Chemical Properties

Volume Five: Size-Dependent Properties

Volume Six: Applications and Industrialization

This handbook describes the fabrication methods of graphene; the nanostructure and atomic arrangement of graphene; graphene's electrical and optical properties; the mechanical and chemical properties of graphene; the size effects in graphene, characterization, and applications based on size-affected properties; and the application and industrialization of graphene.

Volume four is dedicated to the mechanical and chemical properties of graphene and covers:

  • Mechanical properties using a continuum elastic model introduced to describe graphene's elastic behavior
  • Results of theoretical investigations of the mechanical properties of graphene structures
  • Mechanical stabilities and properties of graphene under various strains
  • Different types of graphene devices for biomolecule and gas sensing
  • Printed graphene-based electrochemical sensor technology
  • Various types of graphene-based electrochemical sensors
  • The chemical vapor deposition of graphene on copper
  • Strategies covering graphene modification
  • Graphene in solar cells, including transparent electrodes, active layers, and interface layer
  • Changes at the micrometric and nanometric scales, and more

Mahmood Aliofkhazraei is an assistant professor in the Materials Engineering Department at Tarbiat Modares University. Dr. Aliofkhazraei's research interests include nanotechnology and its use in surface and corrosion science. One of his main interests is plasma electrolysis, and he has published more than 40 papers and a book in this area. Overall he has published more than 12 books and 90 journal articles. Aliofkhazraei has received numerous awards, including the Khwarizmi award, IMES medal, INIC award, best-thesis award, best-book award, and the best young nanotechnologist award of Iran. He is on the advisory editorial board of several nanotechnology journals.Nasar Ali is a visiting professor at Meliksah University in Turkey. Earlier he held the post of chief scientific officer at CNC Coatings Company based in Rochdale, UK. Prior to this Dr. Ali was a faculty member (assistant professor) at the University of Aveiro in Portugal where he founded and led the Surface Engineering and Nanotechnology group. He has over 120 international refereed research publications, including a number of book chapters. Dr. Ali serves on a number of committees for international conferences based on nanomaterials, thin films, and emerging technologies (nanotechnology), and he chairs the highly successful NANOSMAT congress. William I. Milne, FREng, FIET, FIMMM, was head of the Electrical Engineering Division of the Engineering Department at Cambridge University from 1999 until 2014 and was Director of the Centre for Advanced Photonics and Electronics (CAPE) from 2004 until 2015. He earned a BSc at St. Andrews University in Scotland in 1970 and later earned a PhD in electronic materials at the Imperial College London. In 2003 he was awarded a DEng (honoris causa) by the University of Waterloo, Canada. His research interests include large area silicon-and carbon-based electronics, thin film materials, and, MEMS and carbo

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