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This book describes the bond valence model, a description of acid-base bonding which is becoming increasingly popular particularly in fields such as materials science and mineralogy where solid state inorganic chemistry is important. Recent improvements in crystal structure determination have allowed the model to become more quantitative. Unlike other models of inorganic chemical bonding, the bond valence model is simple, intuitive, and predictive, and can be used for analysing crystal structures and the conceptual modelling of local as well as extended structures. This is the first book to explore the theoretical basis of the model and to show how it can be applied to synthetic and solution chemistry. It emphasizes the separate roles of the constraints of chemistry and of three-dimensional space by analysing the chemistry of solids. Many applications of the model in physics, materials science, chemistry, mineralogy, soil science, surface science, and molecular biology are reviewed. The final chapter describes how the bond valence model relates to and represents a simplification of other models of inorganic chemical bonding.
This book investigates the theoretical foundations and practical applications of the bond valence model as a predictive tool for understanding acid-base bonding in inorganic chemistry. Author I. David Brown, a prominent figure in crystallography, synthesizes decades of structural data to present a quantitative framework that simplifies complex bonding interactions. The text argues that by separating the constraints of chemical bonding from the geometric requirements of three-dimensional space, researchers can more effectively analyze and predict the properties of solid-state structures.
What You Will Find
Experts recognize this work as the definitive foundational text for the bond valence model, frequently citing its utility in materials science and structural chemistry. Readers often note the technical density of the prose, which requires a solid background in crystallography to fully grasp the quantitative applications presented.
Page Count:
288
Publication Date:
2002-01-01
Publisher:
International Union of Crystallography
ISBN-10:
0198508700
ISBN-13:
9780198508700
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