Graphene Science Handbook : Fabrication Methods
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Graphene is the strongest material ever studied and in the future may be an efficient substitute for silicon. There is no other major reference work of this scope on the topic of graphene, which is one of the most researched materials of the twenty-first century. The set includes contributions from top researchers in the field and a foreword written by two Nobel laureates in physics. This volume in the set focuses on fabrication methods.
Explores Chemical-Based, Non-Chemical Based, and Advanced Fabrication Methods
The Graphene Science Handbook is a six-volume set that describes graphenes 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; graphenes 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 one is dedicated to fabrication methods and strategies of graphene and covers:
- Various aspects of graphene device process flows
- Experimental procedures for graphene nanoribbons (GNRs) from graphene
- Advances in graphene synthesis routes
- The fabrication of graphene nanoribbons (GNRs) by different methods
- The synthesis of graphene oxide, its reduction, and its functionalization with organic materials
- The electrophoretic deposition (EPD) processing of graphene family materials
- The preparation of graphene using the solvent dispersion method
- Methods for the preparation of graphene oxide
- The fabrication and performance of a gate-free graphene pH sensor
- Advances in wet chemical fabrication of graphene, graphene oxide (GO) and more
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