Get Carbon Meta-Nanotubes: Synthesis, Properties and PDF

By Marc Monthioux

Meta-Nanotubes are a brand new iteration of carbon nanotubes (CNTs) which consequence from the chemical transformation of normal CNTs and their next mix with overseas fabrics (atoms, molecules, chemical teams, nanocrystals) through a number of methods resembling functionalisation, doping, filling, and substitution. those new nanomaterials convey superior or new houses, equivalent to reactivity, solubility, and magnetism, which pristine CNTs don't possess.  Their many functions contain digital and optoelectronic units, chemical and biosensors, sun cells, drug supply, and bolstered glasses and ceramics.

Carbon Meta-Nanotubes: Synthesis, homes and Applications discusses those 3rd new release carbon nanotubes and the original features they own. starting with a common evaluate of the topic, this publication covers the 5 major different types of meta-nanotubes, namely:

  • Doped Carbon Nanotubes
  • Functionalised Carbon Nanotubes
  • Decorated or lined Carbon Nanotubes
  • Filled Carbon Nanotubes
  • Heterogeneous Nanotubes

supplying unheard of insurance of those 3rd iteration or meta-nanotubes, and chances for destiny improvement, this publication is vital for somebody engaged on carbon nanotubes.

Content:
Chapter 1 creation to Carbon Nanotubes (pages 7–39): Marc Monthioux
Chapter 2 Doped Carbon Nanotubes: (X:CNTs) (pages 41–111): Alain Penicaud, Pierre Petit and John E. Fischer
Chapter three Functionalized Carbon Nanotubes: (X?CNTs) (pages 113–161): Stephane Campidelli, Stanislaus S. Wong and Maurizio Prato
Chapter four adorned (Coated) Carbon Nanotubes: (X/CNTs) (pages 163–221): Revathi R. Bacsa and Philippe Serp
Chapter five crammed Carbon Nanotubes (page 223):
Chapter 5a stuffed Carbon Nanotubes: (X@CNTs) (pages 225–271): Jeremy Sloan and Marc Monthioux
Chapter 5b Fullerenes inside of Carbon Nanotubes: The Peapods (pages 273–321): Ferenc Simon and Marc Monthioux
Chapter 6 Heterogeneous Nanotubes: (X*CNTs, X*BNNTs) (pages 323–409): Dmitri Golberg and Mauricio Terrones

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Extra resources for Carbon Meta-Nanotubes: Synthesis, Properties and Applications

Sample text

Such a combination of two 5–7 ring pairs is very frequently referred to as a ‘Stone-Wales defect’ in the literature, which is wrong. Stone and Wales actually discussed the case of a combination of two 5–6 ring pairs [23] (in fullerene structure). The combination involving two 5–7 ring pairs should better be referred to as the ‘Dienes defect’, from the author who first, as far as we can tell, discussed it [24] (in graphene from graphite). combine adequately in order to exist within the SWCNT lattice while maintaining the tube integrity.

Hetero-CNTs are the only metaCNTs for which X is no longer more or less independent from the host. It is integrated to the meta-CNT structure and because of this, the reversibility is not possible. 3 Introducing the Meta-Nanotube Book Chapter 1 of this book is dedicated to an introduction to pristine carbon nanotubes. Because it is doubtful that any reader of this book would ignore what carbon nanotubes are in the first place, it was wondered whether such a chapter was necessary. We finally decided it was, because the world of carbon nanotubes, and nanocarbons generally speaking, is related to the complex and labyrinthic world of carbon materials, which has kept scientists and engineers busy for more than a century.

Nature, 363, 605–607 (1993). [11] M. Monthioux, E. -P. Cleuziou, Hybrid carbon nanotubes: Strategy, progress, and perspectives, J. Mater. , 21, 2774–2793 (2006). [12] M. Monthioux and E. Flahaut, Meta-and hybrid-CNTs: a clue for the future development of carbon nanotubes, Mater. Sci. Eng. C, 27, 1996–2101 (2007). 1 Introduction This chapter does not intend to tell us everything about carbon nanotubes. Its purpose is to merely provide the basics of what is needed to understand the other chapters, regarding the various kinds of carbon nanotubes that are mentioned, the various possibilities of treatments to make them ‘meta-nanotubes’, and the properties that are expected from them.

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