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This book provides readers with a comprehensive overview of the
science of superconducting materials. It serves as a fundamental
information source on the actual techniques and methodologies
involved in superconducting materials growth, characterization and
processing. This book includes coverage of several categories of
medium and high-temperature superconducting materials: cuprate
oxides, borides, and iron-based chalcogenides and pnictides.
Provides a single-source reference on superconducting materials
growth, characterization and processing; Bridges the gap between
materials science and applications of superconductors; Discusses
several categories of superconducting materials such as cuprate
oxides, borides, and iron-based chalcogenides and pnictides; Covers
synthesis, characterization, and processing of superconducting
materials, as well as the nanoengineering approach to tailor the
properties of the used materials at the nanoscale level.
The discovery of C60 and C70, icosahedral spherical and ellipsoidal
carbon species in September 1985, followed by their successful
synthesis in 1990, excited the imagination of many scientists and
demanded a radical revision of old, seemingly well-founded,
preconceptions in carbon science, leading to the institution of a
new, multidisciplinary science of chemistry, physics and materials
science "in the round". Unique carbon materials have been
discovered, like the nanotubes, buckyonions and endohedral
metallofullerenes; and the fullerenes themselves, and their
derivatives, have been found to possess a plethora of interesting
properties, ranging from the inhibition of HIV-I protease to
superconductivity and ferromagnetism. This book discusses the
physics and chemistry of the fullerenes in this context.
This book provides readers with a comprehensive overview of the
science of superconducting materials. It serves as a fundamental
information source on the actual techniques and methodologies
involved in superconducting materials growth, characterization and
processing. This book includes coverage of several categories of
medium and high-temperature superconducting materials: cuprate
oxides, borides, and iron-based chalcogenides and pnictides.
Provides a single-source reference on superconducting materials
growth, characterization and processing; Bridges the gap between
materials science and applications of superconductors; Discusses
several categories of superconducting materials such as cuprate
oxides, borides, and iron-based chalcogenides and pnictides; Covers
synthesis, characterization, and processing of superconducting
materials, as well as the nanoengineering approach to tailor the
properties of the used materials at the nanoscale level.
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