Carbon Nanotubes Quantum Cylinders of Graphene

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  • Publisher : Elsevier
  • Release : 10 September 2008
  • ISBN : 0080569919
  • Page : 232 pages
  • Rating : 4.5/5 from 103 voters

Carbon Nanotubes Quantum Cylinders of Graphene Book PDF summary

This volume is devoted to mostly to nanotubes, unique synthetic nanoscale quantum systems whose physical properties are often singular (i.e. record-setting). Nanotubes can be formed from a myriad of atomic or molecular species, the only requirement apparently being that the host material or “wall fabric be configurable as a layered or sheet-like structure. Nanotubes with sp2-bonded atoms such as carbon, or boron together with nitrogen, are the champions of extreme mechanical strength, electrical response (either highly conducting or highly insulating), and thermal conductance. Carbon nanotubes can be easily produced by a variety of synthesis techniques, and for this reason they are the most studied nanotubes, both experimentally and theoretically. Boron nitride nanotubes are much more difficult to produce and only limited experimental characterization data exist. Indeed, for boron nitride nanotubes, theory is well ahead of experiment. For these reasons this volume deals largely with carbon nanotubes. Conceptually, the "building block" for a carbon nanotube is a single sheet of graphite, called graphene. Recently, it has become possible to experimentally isolate such single sheets (either on a substrate or suspended). This capability has in turn fueled many new theoretical and experimental studies of graphene itself. It is therefore fitting that this volume contains also a chapter devoted to graphene. - Comprehension - Overview - Highlights in the field

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Carbon Nanotubes: Quantum Cylinders of Graphene

Carbon Nanotubes: Quantum Cylinders of Graphene
  • Author : Anonim
  • Publisher : Elsevier
  • Release Date : 2008-09-10
  • ISBN : 0080569919
DOWNLOAD BOOKCarbon Nanotubes: Quantum Cylinders of Graphene

This volume is devoted to mostly to nanotubes, unique synthetic nanoscale quantum systems whose physical properties are often singular (i.e. record-setting). Nanotubes can be formed from a myriad of atomic or molecular species, the only requirement apparently being that the host material or “wall fabric be configurable as a layered or sheet-like structure. Nanotubes with sp2-bonded atoms such as carbon, or boron together with nitrogen, are the champions of extreme mechanical strength, electrical response (either highly conducting or

Handbook of Nanophysics

Handbook of Nanophysics
  • Author : Klaus D. Sattler
  • Publisher : CRC Press
  • Release Date : 2010-09-17
  • ISBN : 1420075411
DOWNLOAD BOOKHandbook of Nanophysics

Covering the key theories, tools, and techniques of this dynamic field, Handbook of Nanophysics: Principles and Methods elucidates the general theoretical principles and measurements of nanoscale systems. Each peer-reviewed chapter contains a broad-based introduction and enhances understanding of the state-of-the-art scientific content through fundamental equations and illustrations, some in color. This volume explores the theories involved in nanoscience. It also discusses the properties of nanomaterials and nanosystems, including superconductivity, thermodynamics, nanomechanics, and nanomagnetism. In addition, leading experts describe basic processes

Carbon Nanotube-Reinforced Polymers

Carbon Nanotube-Reinforced Polymers
  • Author : Roham Rafiee
  • Publisher : Elsevier
  • Release Date : 2017-10-06
  • ISBN : 9780323482226
DOWNLOAD BOOKCarbon Nanotube-Reinforced Polymers

Carbon Nanotube-Reinforced Polymers: From Nanoscale to Macroscale addresses the advances in nanotechnology that have led to the development of a new class of composite materials known as CNT-reinforced polymers. The low density and high aspect ratio, together with their exceptional mechanical, electrical and thermal properties, render carbon nanotubes as a good reinforcing agent for composites. In addition, these simulation and modeling techniques play a significant role in characterizing their properties and understanding their mechanical behavior, and are thus discussed and

Aligned Carbon Nanotubes

Aligned Carbon Nanotubes
  • Author : Zhifeng Ren,Yucheng Lan,Yang Wang
  • Publisher : Springer Science & Business Media
  • Release Date : 2012-09-05
  • ISBN : 9783642304903
DOWNLOAD BOOKAligned Carbon Nanotubes

This book gives a survey of the physics and fabrication of carbon nanotubes and their applications in optics, electronics, chemistry and biotechnology. It focuses on the structural characterization of various carbon nanotubes, fabrication of vertically or parallel aligned carbon nanotubes on substrates or in composites, physical properties for their alignment, and applications of aligned carbon nanotubes in field emission, optical antennas, light transmission, solar cells, chemical devices, bio-devices, and many others. Major fabrication methods are illustrated in detail, particularly the

Carbon Nanotubes for Biomedical Applications

Carbon Nanotubes for Biomedical Applications
  • Author : Rüdiger Klingeler,Robert B. Sim
  • Publisher : Springer Science & Business Media
  • Release Date : 2011-02-09
  • ISBN : 9783642148026
DOWNLOAD BOOKCarbon Nanotubes for Biomedical Applications

This book explores the potential of multi-functional carbon nanotubes for biomedical applications. It combines contributions from chemistry, physics, biology, engineering, and medicine. The complete overview of the state-of-the-art addresses different synthesis and biofunctionalisation routes and shows the structural and magnetic properties of nanotubes relevant to biomedical applications. Particular emphasis is put on the interaction of carbon nanotubes with biological environments, i.e. toxicity, biocompatibility, cellular uptake, intracellular distribution, interaction with the immune system and environmental impact. The insertion of NMR-active

Optical Properties of Solids

Optical Properties of Solids
  • Author : Mark Fox
  • Publisher : Oxford University Press
  • Release Date : 2010-03-26
  • ISBN : 9780191576720
DOWNLOAD BOOKOptical Properties of Solids

The second edition of this successful textbook provides an up-to-date account of the optical physics of solid state materials. The basic principles of absorption, reflection, luminescence, and light scattering are covered for a wide range of materials, including insulators, semiconductors and metals. The text starts with a review of classical optics, and then moves on to the treatment of optical transition rates by quantum theory. In addition to the traditional discussion of crystalline materials, glasses and molecular solids are also

Graphene

Graphene
  • Author : Serhii Shafraniuk
  • Publisher : CRC Press
  • Release Date : 2015-05-05
  • ISBN : 9789814613484
DOWNLOAD BOOKGraphene

Graphene is the first example of two-dimensional materials and is the most important growth area of contemporary research. It forms the basis for new nanoelectronic applications. Graphene, which comprises field-effect structures, has remarkable physical properties. This book focuses on practical applications determined by the unique properties of graphene. Basic concepts are elucidated by end-of-chapter problems, the answers to which are provided in the accompanying solutions manual. The mechanisms of electric and thermal transport in the gated graphene, interface phenomena, quantum

Handbook of Nanomaterials Properties

Handbook of Nanomaterials Properties
  • Author : Bharat Bhushan,Dan Luo,Scott R. Schricker,Wolfgang Sigmund,Stefan Zauscher
  • Publisher : Springer Science & Business Media
  • Release Date : 2014-03-13
  • ISBN : 9783642311079
DOWNLOAD BOOKHandbook of Nanomaterials Properties

Nanomaterials attract tremendous attention in recent researches. Although extensive research has been done in this field it still lacks a comprehensive reference work that presents data on properties of different Nanomaterials. This Handbook of Nanomaterials Properties will be the first single reference work that brings together the various properties with wide breadth and scope.