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The Lectures: Conjugated Polymers in Layered Hosts; M.G.
Kanatzidis, et al. Staging in Intercalated Graphites, Polymers, and
Fullerenes; E.J. Mele. Seminars and Communications: Size-Mismatch
Melting in Two Dimensions; N. Mousseau, M.F. Thorpe. Tight Binding
Molecular Dynamics for Intercalation Chemistry; M. Menon, et al.
Local Oscillator Model for Superconducting Fullerenes; Z. Gedik, S.
Ciraci. Some Optical Properties of Fullerenes; B. Friedman.
Photoluminescence of Solid State Fullerenes; H.J. Byrne, et al.
Magnetic Properties of Alkali Metal Intercalated Fullerides; P.
Byszewski, et al. Charge Transport and Percolation in Conducting
Polymers; J. Voit. Overview on the Chemistry of Intercalation in
Graphite of Binary Metallic Alloys; P. Lagrange. Mineralomimetic
Inclusion Behavior of Cadmium Cyanide Systems; T. Iwamoto, et al.
36 additional articles. Index.
The unexpected recent discovery and synthesis of a new form of
elemental carbon has initiated an abundance of papers on all
aspects of the chemistry and physics of the carbon family. Carbon
Molecules and Materials takes stock of the current understanding of
these various solid forms and, more particularly, of the diamond,
graphite and fullerenes. After a historical background on the main
properties of the element and on the latest discoveries in the
field of fullerene, the chapters review the chemical and physical
aspects of the allotropic forms. It describes the various
properties such as thermodynamic, chemical, structural, electronic,
electrical, optical and magnetic, and discusses current and
potential applications. Written by scientists active in physical
and chemical research on the various forms of carbon and closely
related fields, the book presents a wealth of information on data
and results for students and researchers interested in materials
science and in the applications of advanced materials.
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