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The challenge to understand, control and predict the structures and properties of solid-state chemistry of inorganic materials has driven this field for over 50 years. However, its scope and importance continues to increase, not only with the discovery of new classes of materials, but also through a deeper understanding of the diverse properties of solids made possible by modern techniques. Contributions to solid-state chemistry are now made by researchers who are active in many fields of study, including materials science and engineering, ceramics, chemistry, chemical engineering, mineralogy/geology, and condensed-matter physics. This book brings these areas together to provide an interdisciplinary presentation and discussion of recent advances in solid-state chemistry of inorganic materials, as well as a review of the impact of their development and applications. Topics include oxides, fluorides, chalcogenides, intermetallics and composites, including colossal magnetic resistance, super-conductivity, ion conductivity, magnetism, ferroelectricity, negative thermal expansion and electronic conductivity in transparent materials.
The MRS Symposium Proceeding series is an internationally recognised reference suitable for researchers and practitioners.
The MRS Symposium Proceeding series is an internationally recognised reference suitable for researchers and practitioners.
Symposium EE, 'Solid-State Chemistry of Inorganic Materials VIII', was held Nov. 29-Dec. 3 at the 2010 MRS Fall Meeting in Boston, Massachusetts. Solid-state chemistry is a truly interdisciplinary field, attracting investigators from chemistry, condensed-matter physics, materials science engineering, ceramics, metallurgy, chemical engineering, and mineralogy/geology. It encompasses synthesis of new materials; preparation of materials in new forms (nanocrystalline, thin-film heterostructures, porous, etc.); investigations of the relationships between composition, structure and properties; as well as the application of cutting-edge characterization methods. The scope and importance of solid-state chemistry has grown not only with the discovery of new materials but also through the advancement of techniques for preparing and studying them, and in advanced computational predictions for structures and properties. The intent of the symposium was to provide researchers from academics, government, and industrial laboratories an interdisciplinary forum for interaction, discussion, and exchange of ideas on recent fundamental advances in solid-state chemistry and their impact on the development and application of inorganic materials.
The MRS Symposium Proceeding series is an internationally recognised reference suitable for researchers and practitioners.
The importance and scope of solid-state chemistry has grown in response to the continuing challenge to understand, control and predict the structures and properties of solids at the atomic level, and to synthesize new compounds with enhanced physical response. The many successes in the preparation of materials with unique electronic, optical, magnetic and catalytic properties are a clear testament to the vitality and importance of solid-state chemistry to materials research. This book provides an interdisciplinary forum for discussion and exchange of ideas on both the recent advances in solid-state chemistry and their impact on the development and application of inorganic materials. Topics include: chalcogenides; synthesis and reactivity; materials synthesis; theory; optical properties; electronic and magnetic properties; dielectrics and ferroelectrics; solid-state ionics and surfaces and interfaces.