Templated Fabrication of Graphene-Based aterials for Energy Applications
An illuminating look at the latest research on graphene-based materials and their applications in energy
In Templated Fabrication of Graphene-Based Materials for Energy Applications, a team of distinguished materials scientists delivers a unique and topical exploration of a versatile fabrication method used to create high-quality graphene and composites. The book offers a three-part approach to current topics in graphene fabrication.
The first part introduces graphene-based materials and is followed by cutting-edge discussions of template methods used in the preparation of graphene-based materials. The editors conclude with the latest research in the area of graphene-based materials applications in various energy-related pursuits.
Readers will find relevant content that refers to original research conducted by the editors themselves, as well as work from up-and-coming and established researchers that explores the most interesting horizons in the study of graphene-based materials. The book also provides: - A thorough introduction to graphene, including its history and physical properties - An in-depth analysis of current graphene synthesis strategies, including the classification of graphene preparations - Expansive discussions of various kinds of template methods for graphene production, including the study of porous metals and the preparation of graphene in large quantities - Comprehensive explorations of the applications of various graphene-based materials, including lithium-ion batteries, lithium-sulfur batteries, and supercapacitors
Perfect for materials scientists, electrochemists, and solid-state physicists, Templated Fabrication of Graphene-Based Materials for Energy Applications will also earn a place in the libraries of physical chemists and professionals in the electrotechnical industry.
An illuminating look at the latest research on graphene-based materials and their applications in energy
In Templated Fabrication of Graphene-Based Materials for Energy Applications, a team of distinguished materials scientists delivers a unique and topical exploration of a versatile fabrication method used to create high-quality graphene and composites. The book offers a three-part approach to current topics in graphene fabrication.
The first part introduces graphene-based materials and is followed by cutting-edge discussions of template methods used in the preparation of graphene-based materials. The editors conclude with the latest research in the area of graphene-based materials applications in various energy-related pursuits.
Readers will find relevant content that refers to original research conducted by the editors themselves, as well as work from up-and-coming and established researchers that explores the most interesting horizons in the study of graphene-based materials. The book also provides: - A thorough introduction to graphene, including its history and physical properties - An in-depth analysis of current graphene synthesis strategies, including the classification of graphene preparations - Expansive discussions of various kinds of template methods for graphene production, including the study of porous metals and the preparation of graphene in large quantities - Comprehensive explorations of the applications of various graphene-based materials, including lithium-ion batteries, lithium-sulfur batteries, and supercapacitors
Perfect for materials scientists, electrochemists, and solid-state physicists, Templated Fabrication of Graphene-Based Materials for Energy Applications will also earn a place in the libraries of physical chemists and professionals in the electrotechnical industry.
Table of Contents
PART I INTRODUCTION OF GRAPHENE-BASED MATERIALSChapter 1. Graphene-Based Materials: Structure, Properties
Chapter 2. Graphene Synthesis: An Overview of Current Status
PART II GRAPHENE-BASED MATERIALS FABRICATED BY TEMPLATE-ASSISTED CHEMICAL METALLURGY METHODS
Chapter 3. Nanoporous Metal Template Methods
Chapter 4. Soluble Salt Template Methods
Chapter 5. Powder Metallurgy Template Methods
PART III APPLICATIONS
Chapter 6. Graphene-Based Materials for Lithium-Ion Batteries
Chapter 7. Graphene-Based Materials for Sodium-Ion Batteries
Chapter 8. Graphene-Based Materials for Lithium-Sulfur Batteries
Chapter 9. Graphene-Based Materials for Supercapacitors
Chapter 10. Graphene-Based Materials for Electrocatalysis