Graphene, Nanotubes and Quantum Dots-Based Nanotechnology: Fundamentals and Applications

Publisher:   Elsevier Science Publishing Co Inc
ISBN:  

9780323854573


Pages:   825
Publication Date:   15 July 2022
Format:   Paperback
Availability:   Not yet available   Availability explained
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Graphene, Nanotubes and Quantum Dots-Based Nanotechnology: Fundamentals and Applications


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Overview

A comprehensive look combining experimental and theoretical approaches to graphene, nanotubes, and quantum dots-based nanotechnology evaluation and development are including a review of key applications. Graphene, nanotubes, and quantum dots-based nanotechnology review the fundamentals, processing methods, and applications of this key materials system. The topics addressed are comprehensive including synthesis, preparation, both physical and chemical properties, both accepted and novel processing methods, modeling, and simulation. The book provides fundamental information on key properties that impact performance, such as crystal structure and particle size, followed by different methods to analyze, measure, and evaluate graphene, nanotubes, and quantum dots-based nanotechnology and particles. Finally, important applications are covered, including different applications of biomedical, energy, electronics, etc. Graphene, nanotubes, and quantum dots-based nanotechnology is appropriate for those working in the disciplines of nanotechnology, materials science, chemistry, physics, biology, and medicine.

Full Product Details

Publisher:   Elsevier Science Publishing Co Inc
Imprint:   Woodhead Publishing
ISBN:  

9780323854573


ISBN 10:   0323854575
Pages:   825
Publication Date:   15 July 2022
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Paperback
Publisher's Status:   Forthcoming
Availability:   Not yet available   Availability explained
This item is yet to be released. You can pre-order this item and we will dispatch it to you upon its release.

Table of Contents

1.Introduction to graphene 2.Synthesis methods of graphene 3.Chemical properties of graphene 4.Analysis and characterization of graphene 5.Morphology and topography of graphene 6.Mechanical behavior of graphene conductive ink for wearable applications 7.Functionalized 2D materials 8.Graphene oxide 9.Graphene and optoelectronics 10.Synthesis, properties, and application of biomass-derived graphene-like material 11.Application of graphene in supercapacitors, batteries, and fuel cells 12.Introduction to carbon nanotubes and nanoribbons 13.Synthesis methods of nanotubes 14.Chemical properties of carbon nanotubes 15.Physical properties of carbon nanotubes and nanoribbons 16.Analysis and characterization of carbon nanotube 17.Morphology and topography of nanotubes 18.Functionalized nanotubes 19.Mechanical properties of nanotubes 20.Industrial applications of nanotubes 21.Comprehensive multiscale techniques to estimate the compressive strength of concrete incorporated with carbon nanotubes at various curing times and mix proportions 22.Carbon nanostructures and 2D transition metal dichalcogenides 23.Applications of nanotubes in preparation of polymer composite materials 24.Introduction to quantum dots 25.Synthesis methods of quantum dots 26.Optical properties of quantum dots 27.Chemical properties of quantum dots 28.Physical properties of quantum dots 29.Analysis and characterization of quantum dots 30.Morphology and topography of quantum dots 31.Industrial applications of quantum dots 32.Medical applications of quantum dots 33.Environmental impact of quantum dots 34.Quantum dots embedded ceramic materials-Synthesis and application 35.Quantum dots: policy and ethics 36.Quantum dots for modern display devices

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Author Information

Dr. Yarub Al-Douri is a Professor of Nanoscience and Nanotechnology at the University of Malaya in Malaysia and is a Visiting Professor at Cihan University Sulaimaniya, Sulaimaniya, Iraq and an Adjunct Professor at Bahcesehir University, Istanbul, Turkey. He is the Founding Editor-in-Chief of Experimental and Theoretical Nanotechnology and the Editor-in-Chief of World Journal of Nano Science and Engineering.

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