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Titlebook: Defects and Disorder in Crystalline and Amorphous Solids; C. R. A. Catlow Book 1994 Springer Science+Business Media Dordrecht 1994 Powder

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Point Defect Structures in Crystalline Materials,e foundation for other chapters in this Volume. The information is mainly in a descriptive form and outlines the major types of point defect, an introduction to defect thermodynamics and a survey of the types of dominant point defects in the different solid types. Also included is a brief survey of
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Extended Defects in Crystalline Materials,this paper, we present a short overview of the structure of dislocations and the various kinds of boundaries. By selecting a few examples, we illustrate the role of these defects and their interactions. A number of references are given for further reading.
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Amorphous Solids: An Introduction,ature of the disorder leading to the amorphous state is addressed, and the problem of how to define a defect in a non-crystalline structure is discussed. The concepts of short-and medium-range order (specifically in covalent materials) are also introduced. The problem of how to distinguish experimen
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Neutron Powder Diffraction for the Characterization of Structural Defects in Crystalline Solids,on diffraction. A summary of the relevant scattering formulae for defective materials is presented. The specific characteristics of neutrons versus X-rays and electrons are emphasized in terms of atomic scattering lengths and absorption cross sections. Finally, the use of neutron powder diffraction
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Ionic Transport in Glassy and Polymer Electrolytes, salt-polymer complexes, ionic conductivity is observed above ... the glass transition temperature, and appears to follow a V.T.F. behaviour expressed ... For glassy electrolytes, below their .. temperature, ionic conductivity obeys an Arrhenius law expressed as . = . In the two cases, charge carrie
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