By Pierre Delhaes(auth.)
Chapter 1 A historic review (pages 1–24):
Chapter 2 Polymorphism of Crystalline levels (pages 25–59):
Chapter three Non?Crystalline Carbons (pages 61–96):
Chapter four by-product Compounds and Analogs (pages 97–126):
Chapter five From fragrant Precursors to the Graphene aircraft (pages 127–167):
Chapter 6 common Structural homes (pages 169–215):
Chapter 7 digital buildings and Magnetic homes (pages 217–264):
Chapter eight digital delivery homes (pages 265–319):
Chapter nine Optical homes and their purposes (pages 321–367):
Chapter 10 Vibrational houses (pages 369–408):
Chapter eleven floor and Interface Phenomena (pages 409–459):
Chapter 12 Chemical Reactivity and floor remedy (pages 461–502):
Chapter thirteen Divided and Porous Carbons (pages 503–552):
Chapter 14 Carbon Filaments, Composites and Heterogenous Media (pages 553–590):
Chapter 15 Use of Carbon fabrics (pages 591–630):
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Additional resources for Carbon-based Solids and Materials
Chem. , vol. 18, 674 and 2269, 1885. , Proc. Roy. Soc, vol. 106, p. 749, 1924. , J. Metamorph. , vol. 20, pp. 1-13, 2002. , Nature, vol. 365, p. 605, 1993. , Proc. Roy. Soc. (London), vol. A89, p. 277, 1913. , L’Actualité Chimique, vol. 3, pp. 30-36, 1999. , Phys. Rev. Lett, vol. 90, 155504-1, 2003. , Carbon, vol. 41, pp. 1877-1880, 2003. , A New System of Chemical Philosophy, part 1, R. BICKERSTAFF, London, 1808. , Chapter 2, in P. BERNIER and S. ), Le carbone dans tous ses états, Gordon and Breach Science Publishers, London, 1997, pp.
A translation of half a crystallographic period (length of translation a/√3), is possible implying that half of the carbon atoms are located in the middle of the hexagons of the neighboring planes: this is the classical ABABA stacking of the hexagonal structure. 1) [LIP 42]. Other sequences should be possible without any privileged order or with an ABCD polytype or even with random translations. Such stacking faults would lead to structures called turbostratic, discussed in many studies related to noncrystalline graphitic carbons (see Les carbones, Volume 1, Chapter 1, 1963).
A) Graphene sheet, with the definition of the chiral vector c; and b) examples of three series of SWCNTs (adapted from [SAM 03]) To conclude this presentation it is important to indicate that SWCNTs are not found as isolated and pure entities; they are almost always present as a mixture of configurations aggregated into bundle structures [JOU 97], quite often with a narrow distribution of diameters but with large variations of the chiral angle. 4 nm and a length of several microns, possibly closed by half a C60 at both extremities.
Carbon-based Solids and Materials by Pierre Delhaes(auth.)