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Physical Properties of Ceramic and Carbon Nanoscale Structures : The INFN Lectures, Vol. II - Stefano Bellucci
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Stefano Bellucci:

Physical Properties of Ceramic and Carbon Nanoscale Structures : The INFN Lectures, Vol. II - encadernado, livro de bolso

2011, ISBN: 3642157777

[EAN: 9783642157776], Neubuch, [SC: 0.0], [PU: Springer Berlin Heidelberg], NANOTECHNOLOGIE; TECHNOLOGIE / CARBONNANOSTRUCTURES; CERAMICNANOSTRUCTURES; GRAPHENEANDGRAPHITICALLOTROPES; NAN… mais…

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Physical Properties of Ceramic and Carbon Nanoscale Structures - Stefano Bellucci
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Stefano Bellucci:

Physical Properties of Ceramic and Carbon Nanoscale Structures - novo libro

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Physical Properties of Ceramic and Carbon Nanoscale Structures - Stefano Bellucci
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Stefano Bellucci:
Physical Properties of Ceramic and Carbon Nanoscale Structures - novo libro

2002

ISBN: 9783642157776

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Physical Properties of Ceramic and Carbon Nanoscale Structures: The INFN Lectures, Vol. II Stefano Bellucci Editor
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Physical Properties of Ceramic and Carbon Nanoscale Structures: The INFN Lectures, Vol. II Stefano Bellucci Editor - novo libro

ISBN: 9783642157776

This is the second volume in a series of books on selected topics in Nanoscale Science and Technology based on lectures given at the well-known INFN schools of the same name. The aim of t… mais…

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Physical Properties of Ceramic and Carbon Nanoscale Structures The INFN Lectures, Vol. II - Bellucci, Stefano (Herausgeber)
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Bellucci, Stefano (Herausgeber):
Physical Properties of Ceramic and Carbon Nanoscale Structures The INFN Lectures, Vol. II - encadernado, livro de bolso

2011, ISBN: 3642157777

2011 Gebundene Ausgabe Nanotechnologie, Technologie / Nanotechnologie, Nanowissenschaften, CarbonNanostructures; Ceramicnanostructures; Grapheneandgraphiticallotropes; Nanotubes,nanowir… mais…

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Physical Properties of Ceramic and Carbon Nanoscale Structures: The INFN Lectures, Vol. II Stefano Bellucci Editor

This is the second volume in a series of books on selected topics in Nanoscale Science and Technology based on lectures given at the well-known INFN schools of the same name. The aim of this collection is to provide a reference corpus of suitable, introductory material to relevant subfields, as they mature over time, by gathering the significantly expanded and edited versions of tutorial lectures, given over the years by internationally known experts. The present set of notes stems in particular from the participation and dedication of prestigious lecturers, such as Andrzej Huczko, Nicola Pugno, Alexander Malesevic, Pasquale Onorato and Stefano Bellucci. All lectures were subsequently carefully edited and reworked, taking into account the extensive follow-up discussions. A tutorial lecture by Huczko et al. shows how a variety of carbon and ceramic nanostructures (nanotubes, nanowires, nanofibres, nanorods, and nanoencapsulates) have in particular great potential for improving our understanding of the fundamental concepts of the roles of both dimensionality and size on physical material properties . Bellucci and Onorato provide an extensive and tutorial review of the (quantum) transport properties in carbon nanotubes, encompassing a description of the electronic structure from graphene to single-wall nanotubes, as well as a discussion of experimental evidence of superconductivity in carbon nanotubes and the corresponding theoretical interpretation. In the first contribution by Pugno, new ideas on how to design futuristic self-cleaning, super-adhesive and releasable hierarchical smart materials are presented. He also reviews the mechanical strength of such nanotubes and megacables, with an eye to the visionary project of a carbon nanotube-based 'space elevator megacable'. In his second contribution, Pugno outlines in detail the role on the fracture strength of thermodynamically unavoidable atomistic defects with different size and shape, both numerically and theoretically, for nanotubes and nanotube bundles. Focusing on graphitic allotropes, the chapter by Bellucci and Malesevic aims to give a taste of the widespread implications carbon nanostructures have on research and applications, starting from an historical overview, followed by a discussion of the structure and physical properties of carbon nanotubes and graphene, in particular in the context of the several different synthesis techniques presently available.

Dados detalhados do livro - Physical Properties of Ceramic and Carbon Nanoscale Structures: The INFN Lectures, Vol. II Stefano Bellucci Editor


EAN (ISBN-13): 9783642157776
ISBN (ISBN-10): 3642157777
Livro de capa dura
Ano de publicação: 2011
Editor/Editora: Springer Berlin Heidelberg Core >2
280 Páginas
Peso: 0,492 kg
Língua: eng/Englisch

Livro na base de dados desde 2008-10-11T13:42:25+01:00 (Lisbon)
Página de detalhes modificada pela última vez em 2023-11-16T08:41:43+00:00 (Lisbon)
Número ISBN/EAN: 9783642157776

Número ISBN - Ortografia alternativa:
3-642-15777-7, 978-3-642-15777-6
Ortografia alternativa e termos de pesquisa relacionados:
Autor do livro: bell, stefano, herausgeber, hsien, tutorial books
Título do livro: ceramic, carbon, science ceramics, physical science, properties, the science and technology the, zeitung, name, ansichtskarte, stefano, notes vol


Dados da editora

Autor: Stefano Bellucci
Título: Lecture Notes in Nanoscale Science and Technology; Physical Properties of Ceramic and Carbon Nanoscale Structures - The INFN Lectures, Vol. II
Editora: Springer; Springer Berlin
198 Páginas
Ano de publicação: 2011-03-02
Berlin; Heidelberg; DE
Impresso / Feito em
Língua: Inglês
106,99 € (DE)
109,99 € (AT)
118,00 CHF (CH)
POD
XIV, 198 p.

BB; Hardcover, Softcover / Physik, Astronomie/Atomphysik, Kernphysik; Physik der kondensierten Materie (Flüssigkeits- und Festkörperphysik); Verstehen; Physik; Carbon nanostructures; Ceramic nanostructures; Graphene and graphitic allotropes; Nanotubes, nanowires, nanofibres and nanorods; Nanophysics; Nanotechnology; Nanochemistry; Nanowissenschaften; Nanotechnologie; BC

This is the second volume in a series of books on selected topics in Nanoscale Science and Technology based on lectures given at the well-known INFN schools of the same name. The aim of this collection is to provide a reference corpus of suitable, introductory material to relevant subfields, as they mature over time, by gathering the significantly expanded and edited versions of tutorial lectures, given over the years by internationally known experts. The present set of notes stems in particular from the participation and dedication of prestigious lecturers, such as Andrzej Huczko, Nicola Pugno, Alexander Malesevic, Pasquale Onorato and Stefano Bellucci. All lectures were subsequently carefully edited and reworked, taking into account the extensive follow-up discussions. A tutorial lecture by Huczko et al. shows how a variety of carbon and ceramic nanostructures (nanotubes, nanowires, nanofibres, nanorods, and nanoencapsulates) have in particular great potential for improving our understanding of the fundamental concepts of the roles of both dimensionality and size on physical material properties . Bellucci and Onorato provide an extensive and tutorial review of the (quantum) transport properties in carbon nanotubes, encompassing a description of the electronic structure from graphene to single-wall nanotubes, as well as a discussion of experimental evidence of superconductivity in carbon nanotubes and the corresponding theoretical interpretation. In the first contribution by Pugno, new ideas on how to design futuristic self-cleaning, super-adhesive and releasable hierarchical smart materials are presented. He also reviews the mechanical strength of such nanotubes and megacables, with an eye to the visionary project of a carbon nanotube-based ‘space elevator megacable’. In his second contribution, Pugno outlines in detail the role on the fracture strength of thermodynamically unavoidable atomistic defects with different size and shape, both numerically andtheoretically, for nanotubes and nanotube bundles. Focusing on graphitic allotropes, the chapter by Bellucci and Malesevic aims to give a taste of the widespread implications carbon nanostructures have on research and applications, starting from an historical overview, followed by a discussion of the structure and physical properties of carbon nanotubes and graphene, in particular in the context of the several different synthesis techniques presently available.
With contributions by international experts Focuses on selected, hot topics Tutorial style makes contributions suitable as Supplementary material for advanced courses Includes supplementary material: sn.pub/extras

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