Properties and Functionalization of Graphene
eBook - ePub

Properties and Functionalization of Graphene

A Computational Chemistry Approach

  1. 400 pages
  2. English
  3. ePUB (mobile friendly)
  4. Only available on web
eBook - ePub

Properties and Functionalization of Graphene

A Computational Chemistry Approach

Book details
Table of contents
Citations

About This Book

Properties and Functionalization of Graphene: Computational Chemistry Approaches, Volume 21 shows how computational chemistry can be used to explore molecular interactions when modeling and manipulating graphene's properties for varied applications. Sections compare results and experimental evidence, cover the experimental techniques employed in the functionalization of graphene and associated challenges, and delve into the properties of functionalized graphene. Under the guidance of its expert editor, this book shares insights from a global team of specialists, making it an authoritative, practical guide for all those studying, developing or applying graphene across a whole range of fields.

  • Provides practical insights into the latest computational approaches used in modeling the properties of functionalized graphene
  • Includes detailed methods and step-by-step guidance on key processes that are supported throughout with examples
  • Highlights the electronic properties of functionalized graphene

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Yes, you can access Properties and Functionalization of Graphene by Dinadayalane Tandabany,Frank Hagelberg in PDF and/or ePUB format, as well as other popular books in Physical Sciences & Physical & Theoretical Chemistry. We have over one million books available in our catalogue for you to explore.

Information

Publisher
Elsevier
Year
2022
ISBN
9780323991018

Table of contents

  1. Cover image
  2. Title Page
  3. Table of Contents
  4. Copyright
  5. Contributors
  6. Preface
  7. Chapter 1: Graphene—Technology and integration with semiconductor electronics
  8. Chapter 2: Kinks in buckled graphene uncompressed and compressed in the longitudinal direction
  9. Chapter 3: From classical to quantum dynamics of atomic and ionic species interacting with graphene and its analogue
  10. Chapter 4: From ground to excited electronic state dynamics of electron and ion irradiated graphene nanomaterials
  11. Chapter 5: Molecule-graphene and molecule-carbon surface binding energies from molecular mechanics
  12. Chapter 6: Structural and electronic properties of covalently functionalized graphene
  13. Chapter 7: Reversible and irreversible functionalization of graphene
  14. Chapter 8: Interaction of amino acids, peptides, and proteins with two-dimensional carbon materials
  15. Chapter 9: Structures, properties, and applications of nitrogen-doped graphene
  16. Chapter 10: Toward graphene-based devices for nanospintronics
  17. Index