
Unconventional Techniques for Nanoparticles Production
Methods, Parameters, and Applications
- English
- ePUB (mobile friendly)
- Available on iOS & Android
Unconventional Techniques for Nanoparticles Production
Methods, Parameters, and Applications
About this book
This book provides a comprehensive overview of the latest advancements in unconventional nanoparticle synthesis and their applications, including a foundational understanding of unconventional nanoparticle covering synthesis, characterization, and green manufacturing technologies. Further, it covers laser ablation-mediated synthesis of carbon-coated TiO2 nanoparticles, supercritical CO2-assisted reaction crystallization, continuous hydrothermal nanoparticle synthesis, and safety and environmental implications of unconventional nanoparticle synthesis.
- Presents insights into both fundamental and applied aspects of unconventional nanoparticle production methods.
- Discusses progress in unconventional nanoparticle synthesis, particularly in-situ supercritical fluid synthesis with additives.
- Provide insights into cutting-edge advancements in techniques to produce nanoparticles with distinct properties.
- Includes an in-depth analysis of green technology to produce nanoparticles.
- Reviews practical applications of unconventional nanoparticles, highlighting their role in pioneering energy storage solutions.
This book is aimed at graduate students and researchers in materials science and nanomaterials.
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Table of contents
- Cover Page
- Half Title page
- Title Page
- Copyright Page
- Contents
- Preface
- Editors’ Biography
- List of Contributors
- Chapter 1 Micro-Electrical Discharge Machining (Micro-EDM) for Tailored Synthesis of Nickel Nanoparticles
- Chapter 2 Investigation on Reduced Graphene Oxide-Based Metal Hydroxide Nanocomposites for Supercapacitor Application
- Chapter 3 Synthesis and Characterization of Flexible Conductive Elastomer Doped with rGO-Decorated CaCO3 Nanocomposite
- Chapter 4 Electroless Deposition of rGO-Doped Ni-P on Steel Rebar
- Chapter 5 Electronic Structure and Properties of Chalcogenide Semiconductors Cu₂MgSnX₄ (X=S, Se) in Photovoltaic Application
- Chapter 6 Molecular Modelling of Layered Polyurethane-h-BNNS Nanocomposite and Estimation of Mechanical Properties Using Molecular Dynamics Simulation
- Chapter 7 Nanoparticles for Supercapacitor Application
- Chapter 8 ZnO Nanostructure: Properties, Material Growth and Applications
- Chapter 9 Contact Interface Analysis of Polymer-Based Hydrophilic Surfaces
- Chapter 10 Simulation and Experimental Behaviour of Montmorillonite Nano Cement Composite
- Chapter 11 Enhancing Nano Surface Quality through Optimization for Robotic Wire Arc Additive Manufacturing
- Chapter 12 Tribology in Hip and Knee Joint Replacements with Emphasis on Nano-Surface Coating
- Index
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