Defect Engineering of Carbon Nanostructures

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Author :
Publisher : Springer Nature
ISBN 13 : 3030943755
Total Pages : 272 pages
Book Rating : 4.52/5 ( download)

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Book Synopsis Defect Engineering of Carbon Nanostructures by : Sumanta Sahoo

Download or read book Defect Engineering of Carbon Nanostructures written by Sumanta Sahoo and published by Springer Nature. This book was released on 2022-03-19 with total page 272 pages. Available in PDF, EPUB and Kindle. Book excerpt: ​This book presents an analysis of the techniques used for the synthesis of innovative functional carbon nanostructures. The chapters describe the research and development of various layered carbon nanostructures. Emphasis is given to the impact of defects on carbon nanostructures. The application of carbon nanostructured materials in biomedical field and energy storage is described.

Defects in Advanced Electronic Materials and Novel Low Dimensional Structures

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Author :
Publisher : Woodhead Publishing
ISBN 13 : 0081020546
Total Pages : 306 pages
Book Rating : 4.48/5 ( download)

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Book Synopsis Defects in Advanced Electronic Materials and Novel Low Dimensional Structures by : Jan Stehr

Download or read book Defects in Advanced Electronic Materials and Novel Low Dimensional Structures written by Jan Stehr and published by Woodhead Publishing. This book was released on 2018-06-29 with total page 306 pages. Available in PDF, EPUB and Kindle. Book excerpt: Defects in Advanced Electronic Materials and Novel Low Dimensional Structures provides a comprehensive review on the recent progress in solving defect issues and deliberate defect engineering in novel material systems. It begins with an overview of point defects in ZnO and group-III nitrides, including irradiation-induced defects, and then look at defects in one and two-dimensional materials, including carbon nanotubes and graphene. Next, it examines the ways that defects can expand the potential applications of semiconductors, such as energy upconversion and quantum processing. The book concludes with a look at the latest advances in theory. While defect physics is extensively reviewed for conventional bulk semiconductors, the same is far from being true for novel material systems, such as low-dimensional 1D and 0D nanostructures and 2D monolayers. This book fills that necessary gap. Presents an in-depth overview of both conventional bulk semiconductors and low-dimensional, novel material systems, such as 1D structures and 2D monolayers Addresses a range of defects in a variety of systems, providing a comparative approach Includes sections on advances in theory that provide insights on where this body of research might lead

Defects and Diffusion in Carbon Nanotubes

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Author :
Publisher :
ISBN 13 :
Total Pages : 212 pages
Book Rating : 4.22/5 ( download)

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Book Synopsis Defects and Diffusion in Carbon Nanotubes by :

Download or read book Defects and Diffusion in Carbon Nanotubes written by and published by . This book was released on 2014 with total page 212 pages. Available in PDF, EPUB and Kindle. Book excerpt: Carbon nanotubes are one of the newest materials to be discovered, being barely 20 years old. They are also the most promising one, with one particular sample of multi-walled nanotube attaining a tensile strength of 63GPa, and with carbon nanotubes in general having a specific strength of up to 48000kNm/kg: effectively a direct exploitation of the covalent sp2 bonding between carbon atoms. Plastic deformation begins at about 5% strain. The nanotubes can be produced in lengths of up to 550mm, and thicknesses as small as 4.3Å; making them perfect reinforcement fibres for composites. They also have many other properties which may be useful in electronics, gas storage, etc. The present compilation focuses on the various characteristic types of defect which are found in carbon nanotubes, plus the relatively limited number of diffusion studies which have been performed. The 418 entries cover the period from 1994 to 2014. Keyword: carbon nanotube Abstracts of 418 articles published in a wide range of technical journals coverfirst defects in carbon nanotubes then the diffusion of various compounds through carbon nanotubes. Those on defects consider such aspects as adsorption, characterization, disclination, the effect on compressive behavior, the effect on thermal conductivity, heptagon, interstitial, pinhole, topological, andvacancy. Among the chemicals addressed in the diffusion studies are alkanes, gold, carbon dioxide, copper, iron, water, Lennard-Jones fluid, nitrogen, silicon, and simple gases. -- Carbon-- Engineering-- Materials science.

Nanostructured Photocatalyst via Defect Engineering

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Author :
Publisher : Springer Nature
ISBN 13 : 3030819116
Total Pages : 388 pages
Book Rating : 4.18/5 ( download)

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Book Synopsis Nanostructured Photocatalyst via Defect Engineering by : Vitaly Gurylev

Download or read book Nanostructured Photocatalyst via Defect Engineering written by Vitaly Gurylev and published by Springer Nature. This book was released on 2021-10-28 with total page 388 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book helps readers comprehend the principles and fundamentals of defect engineering toward realization of an efficient photocatalyst. The volume consists of two parts, each of which addresses a particulate type of defects. The first, larger section provides a comprehensive and rigorous treatment of the behaviour and nature of intrinsic defects. The author describes how their controlled introduction and consequent manipulation over concentration, distribution, nature and diffusion is one of the most effective and practical methodologies to modify the properties and characteristics of target photocatalytic materials. The second part of the book explains the formation of extrinsic defects in the form of metallic and non-metallic dopants and gives a detailed description of their characteristics as this approach is also often used to fabricate an efficient photocatalyst. Filling the gap in knowledge on the correlation between introduction of defects in various semiconducting materials and their photocatalytic performance, the book is ideal for graduate students, academics and researchers interested in photocatalysts, defect engineering, clean energy, hydrogen production, nanoscale advanced functional materials, CO2 deactivation, and semiconductor engineering.

Defect Structure in Nanomaterials

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Author :
Publisher : Elsevier
ISBN 13 : 0857096141
Total Pages : 389 pages
Book Rating : 4.42/5 ( download)

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Book Synopsis Defect Structure in Nanomaterials by : J Gubicza

Download or read book Defect Structure in Nanomaterials written by J Gubicza and published by Elsevier. This book was released on 2012-06-01 with total page 389 pages. Available in PDF, EPUB and Kindle. Book excerpt: Nanomaterials exhibit unique mechanical and physical properties compared to their coarse-grained counterparts, and are consequently a major focus of current scientific research. Defect structure in nanomaterials provides a detailed overview of the processing methods, defect structure and defect-related mechanical and physical properties of a wide range of nanomaterials. The book begins with a review of the production methods of nanomaterials, including severe plastic deformation, powder metallurgy and electrodeposition. The lattice defect structures formed during the synthesis of nanomaterials are characterised in detail. Special attention is paid to the lattice defects in low stacking fault energy nanomaterials and metal – carbon nanotube composites. Topics covered in the second part of the book include a discussion of the thermal stability of defect structure in nanomaterials and a study of the influence of lattice defects on mechanical and hydrogen storage properties. Gives in-depth, physically based explanations for the relationships between the defect structure and mechanical properties of nanomaterials Covers a wide range of nanomaterials including metals; alloys; ceramics; diamond; carbon nanotubes and their composites Provides a detailed characterization of the lattice defect structure in nanomaterials

Defects and Diffusion in Carbon Nanotubes

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Author :
Publisher : Trans Tech Publications Ltd
ISBN 13 : 3038266027
Total Pages : 212 pages
Book Rating : 4.20/5 ( download)

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Book Synopsis Defects and Diffusion in Carbon Nanotubes by : D.J. Fisher

Download or read book Defects and Diffusion in Carbon Nanotubes written by D.J. Fisher and published by Trans Tech Publications Ltd. This book was released on 2014-08-04 with total page 212 pages. Available in PDF, EPUB and Kindle. Book excerpt: Carbon nanotubes are one of the newest materials to be discovered, being barely 20 years old. They are also the most promising one, with one particular sample of multi-walled nanotube attaining a tensile strength of 63GPa, and with carbon nanotubes in general having a specific strength of up to 48000kNm/kg: effectively a direct exploitation of the covalent sp2 bonding between carbon atoms. Plastic deformation begins at about 5% strain. The nanotubes can be produced in lengths of up to 550mm, and thicknesses as small as 4.3Å; making them perfect reinforcement fibres for composites. They also have many other properties which may be useful in electronics, gas storage , etc. The present compilation focuses on the various characteristic types of defect which are found in carbon nanotubes, plus the relatively limited number of diffusion studies which have been performed. The 418 entries cover the period from 1994 to 2014.

Defect Structure and Properties of Nanomaterials

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Author :
Publisher : Woodhead Publishing
ISBN 13 : 0081019181
Total Pages : 410 pages
Book Rating : 4.84/5 ( download)

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Book Synopsis Defect Structure and Properties of Nanomaterials by : J Gubicza

Download or read book Defect Structure and Properties of Nanomaterials written by J Gubicza and published by Woodhead Publishing. This book was released on 2017-03-05 with total page 410 pages. Available in PDF, EPUB and Kindle. Book excerpt: Defect Structure and Properties of Nanomaterials: Second and Extended Edition covers a wide range of nanomaterials including metals, alloys, ceramics, diamond, carbon nanotubes, and their composites. This new edition is fully revised and updated, covering important advances that have taken place in recent years. Nanostructured materials exhibit unique mechanical and physical properties compared with their coarse-grained counterparts, therefore these materials are currently a major focus in materials science. The production methods of nanomaterials affect the lattice defect structure (vacancies, dislocations, disclinations, stacking faults, twins, and grain boundaries) that has a major influence on their mechanical and physical properties. In this book, the production routes of nanomaterials are described in detail, and the relationships between the processing conditions and the resultant defect structure, as well as the defect-related properties (e.g. mechanical behavior, electrical resistance, diffusion, corrosion resistance, thermal stability, hydrogen storage capability, etc.) are reviewed. In particular, new processing methods of nanomaterials are described in the chapter dealing with the manufacturing procedures of nanostructured materials. New chapters on (i) the experimental methods for the study of lattice defects, (ii) the defect structure in nanodisperse particles, and (iii) the influence of lattice defects on electrical, corrosion, and diffusion properties are included, to further enhance what has become a leading reference for engineering, physics, and materials science audiences. Provides a detailed overview of processing methods, defect structure, and defect-related mechanical and physical properties of nanomaterials Covers a wide range of nanomaterials including metals, alloys, ceramics, diamond, carbon nanotubes, and their composites Includes new chapters covering recent advances in both processing techniques and methods for the study of lattice defects Provides valuable information that will help materials scientists and engineers highlight lattice defects and the related mechanical and physical properties

Graphene Oxide

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Author :
Publisher : BoD – Books on Demand
ISBN 13 : 178923588X
Total Pages : 162 pages
Book Rating : 4.83/5 ( download)

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Book Synopsis Graphene Oxide by : Ganesh Shamrao Kamble

Download or read book Graphene Oxide written by Ganesh Shamrao Kamble and published by BoD – Books on Demand. This book was released on 2018-09-19 with total page 162 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book aims to introduce the emerging technologies of graphene oxide (GO) in various fields such as industrial, medical, electronics, artificial intelligence, materials-alloys, energy storage devices, optical, physics, mechanical, nanomaterials, and sustainable chemistry. At the current level of development, the properties and binding structure of graphene are important toward the recent applications. The knowledge produced by the graphene oxide could be a much haunting basis for discovering innovative opportunities in the field of emerging trends of research. Future technology expected that the full development will depend only on graphene and its functionalized composite materials. This book highlights the challenges and opportunities associated with GOs. Subject of interest in this book is exploring the opportunities and technologies related to abundant clean energy, pure water, and noble long healthy life.

Handbook of Carbon Nanotubes

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Author :
Publisher : Springer Nature
ISBN 13 : 3030913465
Total Pages : 2099 pages
Book Rating : 4.65/5 ( download)

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Book Synopsis Handbook of Carbon Nanotubes by : Jiji Abraham

Download or read book Handbook of Carbon Nanotubes written by Jiji Abraham and published by Springer Nature. This book was released on 2022-11-16 with total page 2099 pages. Available in PDF, EPUB and Kindle. Book excerpt: This Handbook covers the fundamentals of carbon nanotubes (CNT), their composites with different polymeric materials (both natural and synthetic) and their potential advanced applications. Three different parts dedicated to each of these aspects are provided, with chapters written by worldwide experts in the field. It provides in-depth information about this material serving as a reference book for a broad range of scientists, industrial practitioners, graduate and undergraduate students, and other professionals in the fields of polymer science and engineering, materials science, surface science, bioengineering and chemical engineering. Part 1 comprises 22 chapters covering early stages of the development of CNT, synthesis techniques, growth mechanism, the physics and chemistry of CNT, various innovative characterization techniques, the need of functionalization and different types of functionalization methods as well as the different properties of CNT. A full chapter is devoted to theory and simulation aspects. Moreover, it pursues a significant amount of work on life cycle analysis of CNT and toxicity aspects. Part 2 covers CNT-based polymer nanocomposites in approximately 23 chapters. It starts with a short introduction about polymer nanocomposites with special emphasis on CNT-based polymer nanocomposites, different manufacturing techniques as well as critical issues concerning CNT-based polymer nanocomposites. The text deeply reviews various classes of polymers like thermoset, elastomer, latex, amorphous thermoplastic, crystalline thermoplastic and polymer fibers used to prepare CNT based polymer composites. It provides detailed awareness about the characterization of polymer composites. The morphological, rheological, mechanical, viscoelastic, thermal, electrical, electromagnetic shielding properties are discussed in detail. A chapter dedicated to the simulation and multiscale modelling of polymer nanocomposites is an additional attraction of this part of the Handbook. Part 3 covers various potential applications of CNT in approximately 27 chapters. It focuses on individual applications of CNT including mechanical applications, energy conversion and storage applications, fuel cells and water splitting, solar cells and photovoltaics, sensing applications, nanofluidics, nanoelectronics and microelectronic devices, nano-optics, nanophotonics and nano-optoelectronics, non-linear optical applications, piezo electric applications, agriculture applications, biomedical applications, thermal materials, environmental remediation applications, anti-microbial and antibacterial properties and other miscellaneous applications and multi-functional applications of CNT based polymer nanocomposites. One chapter is fully focussed on carbon nanotube research developments: published papers and patents. Risks associated with carbon nanotubes and competitive analysis of carbon nanotubes with other carbon allotropes are also addressed in this Handbook.

Carbon Nanomaterials: Modeling, Design, and Applications

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Author :
Publisher : CRC Press
ISBN 13 : 1351123572
Total Pages : 468 pages
Book Rating : 4.70/5 ( download)

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Book Synopsis Carbon Nanomaterials: Modeling, Design, and Applications by : Kun Zhou

Download or read book Carbon Nanomaterials: Modeling, Design, and Applications written by Kun Zhou and published by CRC Press. This book was released on 2019-07-17 with total page 468 pages. Available in PDF, EPUB and Kindle. Book excerpt: Carbon Nanomaterials: Modeling, Design, and Applications provides an in-depth review and analysis of the most popular carbon nanomaterials, including fullerenes, carbon nanotubes, graphene and novel carbon nanomaterial-based membranes and thin films, with emphasis on their modeling, design and applications. This book provides basic knowledge of the structures, properties and applications of carbon-based nanomaterials. It illustrates the fundamental structure-property relationships of the materials in both experimental and modeling aspects, offers technical guidance in computational simulation of nanomaterials, and delivers an extensive view on current achievements in research and practice, while presenting new possibilities in the design and usage of carbon nanomaterials. This book is aimed at both undergraduate and graduate students, researchers, designers, professors, and professionals within the fields of materials science and engineering, mechanical engineering, applied physics, and chemical engineering.