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The progress of materials science depends on the development of
novel materials and the development of novel experimental
techniques. The research on graphite intercalation compounds
combines both aspects: new compounds with strikingly new and
anisotropic properties have been synthesized and analyzed during
the past couple of years by means of state-of-the-art experimental
methods. At the same time, the preparation of the compounds already
known has improved con siderably, giving increased reliability and
reproducibility of the experimental results. The high quality
experimental data now available have stimulated theo retical work.
Moreover, the theoretical work has had a great impact on further
experimental studies, with the effect of a much improved
understanding of this class of materials. This volume is dedicated
to a thorough description of all relevant experimen tal and
theoretical aspects of the structural and dynamical properties of
graphite intercalation compounds. Because of the large number of
topics, a second vol ume, which is now in preparation, will follow
and will treat the electronic, transport, magnetic, and optical
properties. The second volume will also contain a chapter on
applications of graphite intercalation compounds. There have been a
number of reviews written on selected aspects of these compounds in
various journals and conference proceedings during the last couple
of years, but this is the first comprehensive review since the
thorough overview provided by M.S. Dresselhaus and G. Dresselhaus
appeared ten years ago."
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