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Physics and Chemistry of Electrons and Ions in Condensed Matter

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Cover of 'Physics and Chemistry of Electrons and Ions in Condensed Matter'

Table of Contents

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    Book Overview
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    Chapter 1 The Effective U in Oxides and in Sulfides: Conceptual Phase Diagrams and Their Applications
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    Chapter 2 Electron Correlations in Elementary Structures. The Case of Weak Correlations: Metallic and Covalent Bondings
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    Chapter 3 Statistical Thermodynamics of Mixed Valence at Low Temperatures
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    Chapter 4 Mixed Valency in Inorganic Chemistry
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    Chapter 5 Intermediate Valency (IV) Compounds
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    Chapter 6 Thermal Expansion and Specific Heat of Mixed Valence Compounds
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    Chapter 7 The Contribution of Solid State Chemistry to Diversification of the Studies on Metal-Insulator Transition
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    Chapter 8 The Study of Metal to Non-Metal Transitions by High Resolution Electron Spectroscopy
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    Chapter 9 Electrical Properties of Rutile Type Oxides: Doped TiO 2 and RuO 2
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    Chapter 10 Mixed Anion Valencies in Copper Sulfides and Selenides
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    Chapter 11 Charge Transfer and Exciton Satellites in the Photoelectron Spectra of Transition Metal Compounds
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    Chapter 12 Direct Determination of Electron Correlation in a Simple Binuclear Complex
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    Chapter 13 Hall Effect in Vitreous 80 V 2 O 5 - 20 P 2 O 5
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    Chapter 14 Application of Group Theory to X-Ray Absorption Edge Studies
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    Chapter 15 On Discrete Symmetry Groups for Systems with an Odd Number of Electrons
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    Chapter 16 Superconductivity in the BaPb 1-x Bi x O 3 System
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    Chapter 17 Electronic Properties of Non-Crystalline Semiconductors
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    Chapter 18 Thermodynamics of Condensed Ionic Systems
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    Chapter 19 Transport Properties at the Metal-Insulator Transition in Metal Ammonia Solutions
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    Chapter 20 Electrons and Ions in Liquid and Amorphous Metals
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    Chapter 21 Molten Salts and Liquid Semiconductors: Structure and Electrical Properties
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    Chapter 22 Structure-Transport Relations in Molten Salts
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    Chapter 23 EXAFS Study of the Structure of Molten CuCl
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    Chapter 24 Bonding at Bulk and Defect Sites in Amorphous Semiconductors
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    Chapter 25 Regular Rings in Glasses
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    Chapter 26 Size Effects in Semiconductors
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    Chapter 27 Photoinduced Changes in Amorphous Chalcogens
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    Chapter 28 Metal Insulator Transitions
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    Chapter 29 Magnetism and Magnetic Resonance Across the Metal-Nonmetal Transition
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    Chapter 30 X-Ray Absorption Spectroscopy across the Metal to Non-Metal Transition
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    Chapter 31 Thermodynamics and Electrochemistry of Sodium-Ammonia Solutions and of Solvated Electrons in Ammonia
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    Chapter 32 Solvated Electrons
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    Chapter 33 Phase Separation in Expanded Metallic Liquids
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    Chapter 34 The Properties of Doped Liquid Iodine Melts
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    Chapter 35 Low Frequency Dielectric Constant and Electrical Conductivity of Dense Mercury Vapour
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    Chapter 36 Transport Properties of Chloride and Fluoride Glass-Forming Melts, Its Relationship with Coordination Numbers
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    Chapter 37 Electronic Properties of Intercalate Complexes of Layer Type Transition Metal Dichalcogenides
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    Chapter 38 Band Structure and Optical Properties of Layer Compounds
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    Chapter 39 LDS Intercalation with Donor and Acceptor Molecules
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    Chapter 40 Physico-Chemical Aspects of Intercalation Phenomena
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    Chapter 41 Ag Intercalation in TiS 2
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    Chapter 42 Transport and Raman Investigation of the Group IV Layered Compounds and their Lithium Intercalates
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    Chapter 43 Ion-Electron Interaction and Intercalation Induced Semiconductor to Metal Transition in the Intercalated Dichalcogenide Li x ZrSe 2
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    Chapter 44 Charge Density Waves in the Mo Bronzes : CDW Transport in one Dimensional K 0.30 Mo0 3 and CDW Instability in Two-Dimensional K 0.9 Mo 6 0 17
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    Chapter 45 A Survey of the Origins of Incommensurate Behaviour and of New Materials Illuminating the CDW Field
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    Chapter 46 Intercalation of Tetrathiafulvalene and Related Molecules into FeCl
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    Chapter 47 A Graphite Intercalation Compound as Applied to Battery Electrode Materials
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    Chapter 48 Conducting Organic Solids
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    Chapter 49 Organic Superconductors: Quasi-One-Dimensional Conductors, Anomalous Superconductors, Promising Materials
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    Chapter 50 Electronic Properties of Conjugated Polymers
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    Chapter 51 Unusual Electronic Soliton States of the Infinite Polyyne Chain —(C ≡ C)—X
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    Chapter 52 A Narrow Window for Superconductivity in Organic Conductors
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    Chapter 53 Properties of Organic Salts of TMTSF and TMTTF
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    Chapter 54 The Effect of Oxidation on the Electrical Properties of Organic Conjugated Polymers
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    Chapter 55 Anisotropy of Thermopower in MEM(TCNQ) 2
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    Chapter 56 Localisation and Interaction Effects in the 2D Electron Gas of the Silicon Inversion Layer
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    Chapter 57 The Effects of Hydrogen on MOS Structures
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    Chapter 58 Transport Theory for High-Resistivity Conductors
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    Chapter 59 XPS Investigation of the Electronic Structure of Highly Dispersed Mn0 on Carbon Foil
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    Chapter 60 Angle Resolved Photoemission and Secondary Electron Emission Study of Single Crystal Graphite
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    Chapter 61 Fast Ionic Conduction in Solids
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    Chapter 62 What Factors May Increase Superionic Conductivity?
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Title
Physics and Chemistry of Electrons and Ions in Condensed Matter
Published by
Springer Netherlands, December 2012
DOI 10.1007/978-94-009-6440-2
ISBNs
978-9-40-096442-6, 978-9-40-096440-2
Editors

Acrivos, J. V., Mott, N. F., Yoffe, A. D.

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 25 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Germany 2 8%
Serbia 1 4%
France 1 4%
Unknown 21 84%

Demographic breakdown

Readers by professional status Count As %
Student > Master 5 20%
Student > Ph. D. Student 4 16%
Researcher 3 12%
Student > Doctoral Student 2 8%
Student > Bachelor 2 8%
Other 7 28%
Unknown 2 8%
Readers by discipline Count As %
Chemistry 6 24%
Physics and Astronomy 5 20%
Materials Science 4 16%
Energy 3 12%
Medicine and Dentistry 1 4%
Other 2 8%
Unknown 4 16%