Physical Fundamentals of Nanomaterials 1st Edition by Bangwei Zhang – Ebook PDF Instant Download/Delivery:9780124104792,0124104797
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ISBN 10:0124104797
ISBN 13:9780124104792
Author:Bangwei Zhang
Physical Fundamentals of Nanomaterials systematically describes the principles, structures and formation mechanisms of nanomaterials, in particular the concepts, principles and theories of their physical properties as well as the most important and commonly used preparation methods. The book aims to provide readers with a basic understanding of how nanomaterials are synthesized as well as their resultant physical properties it therefore focuses on the science of nanomaterials rather than applications, serving as an excellent starting point for researchers, materials scientists and advanced students who already possess a basic knowledge of chemistry and physics.
- Provides thorough coverage of the physics and processes involved in the preparation of nanomaterials
- Contains separate chapters for various types of synthesis methods, including gas phase, liquid phase, solid phase, and self-assembly
- Coverage of properties includes separate chapters on mechanical, thermal, optical, electrical and magnetic
Physical Fundamentals of Nanomaterials 1st Table of contents:
Chapter 1. Introduction
Abstract
1.1 Nanomaterial Age
1.2 What Are Nanomaterials?
1.3 History of Nanomaterial Development
1.4 Importance of Nanomaterials
1.5 Potential Problems of Nanomaterials
1.6 Purpose of This Book: Fundamentals of Nanomaterial Physics
References
Chapter 2. Principles, Methods, Formation Mechanisms, and Structures of Nanomaterials Prepared via Gas-Phase Processes
Abstract
2.1 Principles of Physical Vapor Deposition
2.2 Physical Vapor Deposition
2.3 Chemical Vapor Deposition
2.4 Filtered Cathodic Vacuum Arc Deposition
2.5 Comparison of Various Vapor Deposition Methods
References
Chapter 3. Principles, Methods, Formation Mechanisms, and Structures of Nanomaterials Prepared in the Liquid Phase
Abstract
3.1 Precipitation
3.2 Sol–Gel Method
3.3 Chemical-Reduction Method
3.4 Comparison of Various Liquid Nanoparticle Preparation Methods
References
Chapter 4. Principles, Methods, Formation Mechanisms, and Structures of Nanomaterials Prepared via Solid-Phase Syntheses
Abstract
4.1 Mechanical Alloying
4.2 Nanomaterial Preparation via Solid-Phase Methods
4.3 Microstructures and Defects in Body Nanomaterials
References
Chapter 5. Principles, Methods, Formation Mechanisms, and Structures of Nanomaterials Prepared via Self-Assembly
Abstract
5.1 What Is Self-Assembly?
5.2 Types and Common Characteristics of Self-Assembly Mechanisms
5.3 Nanomaterial Fabrication via Self-Assembly
5.4 Template-Based Nanomaterial Fabrication
References
Chapter 6. Mechanical Properties of Nanomaterials
Abstract
6.1 Elasticity of Nanomaterials
6.2 Strengths, Hardnesses and Hall–Petch Relationships in Nanomaterials
6.3 Nanomaterial Fracture and Fatigue
6.4 Nanomaterial Creep and Superplasticity
6.5 Deformation and Fracture Mechanisms in Nanomaterials
References
Chapter 7. Thermal Properties of Nanomaterials
Abstract
7.1 Melting Point
7.2 Thermal Conductivity
7.3 Specific Heat
7.4 Thermal Expansion
References
Chapter 8. Optical Properties of Nanomaterials
Abstract
8.1 Light Absorption of Nanomaterials
8.2 Colors of Nanomaterials
8.3 Light-Emission of Nanomaterials
8.4 Magnetooptical Properties of Nanomaterials
References
Chapter 9. Electrical Properties of Nanometer Materials
Abstract
9.1 Resistivity of Nanomaterials
9.2 Theoretical Simulation of Resistivity for Nanomaterials
9.3 Thermoelectric Conversion Efficiency of Nanomaterials
9.4 Superconductivity of Nanomaterials
References
Chapter 10. Magnetic Properties of Nanomaterials
Abstract
10.1 Magnetic Moment of Nanometer Magnetic Materials
10.2 Curie Temperature of Nanomagnetic Materials
10.3 Magnetization and Coercivity of Nanometer Magnetic Materials
10.4 Magnetoresistance and Giant Magnetoresistance of Nanometer Magnetic Materials
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