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|a Karamov, F. A.
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|a Superionic conductors :
|b heterostructures and elements of functional electronics based on them /
|c F.A. Karamov.
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|a Cambridge :
|b Cambridge International Science Pub.,
|c 2008.
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|a 1 online resource (xvii, 212 pages) :
|b illustrations
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|a text
|b txt
|2 rdacontent
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|a computer
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|a online resource
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|a Includes bibliographical references (pages 199-212).
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|a Print version record.
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|a Contents -- Symbols and abbreviations -- Introduction -- 1. Superionic conductors -- 1.1. Types of superionic conductors -- 1.2. Superionic conductors with a constant composition -- 1.3. Properties of superionic conductors of variable composition�ion�electron conductors -- 1.4. The method of equivalent schemes in examination of relaxation processes at the electrode�superionic conductor interface -- 1.5. Impedance of heterostructures based on superionic conductors
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|a 1.6. Physical�chemical effects in superionic conductors and structures based on them and prospects for application2. Methods for studying superionic conductors, ion�electron conductors and heterostructures based on them -- 2.1. Measurement method in the direct current regime in structures with superionic conductors -- 2.2. Measurements in the alternating current regime in structures with ionic and electronic conductivity -- 2.3. Methods of measurement of the impedance of heterostructures on the basis of superionic conductors in the infralow frequency range
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|a 2.4. Functional electrical scheme of experimental equipment for measurement of the parameters of impedance of the infralow frequency range2.5. Main calculations relationships in the measurements of impedance parameters -- 2.6. Evaluation of measurement errors -- 2.7. Measuring system for impedance investigations of infralow frequency range -- 2.8. Technological methods of producing thin film specimens of superionic conductors -- 2.8.1. Vacuum spraying methods -- 2.8.2. Chemical method of producing films of superionic conductors -- 2.8.3. Thick film technology
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|a 3. Properties of inverse and polarisable heterostructures based on superionic conductors and ionâ€?electron conductors3.1. Methodological problems of selecting the electrode system for impedance investigations -- 3.2. Properties of the inverse Ag/RbAg4I5 interface -- 3.3. Main properties of the electrochemical deposited silver layer in contact with the RbAgâ€?4I5 superionic conductor -- 3.4. Impedance of Ag/Î", β-AgI heterostructures -- 3.5. Impedance of the inverse heterostructure Ni/Ag2Te/RbAg4I5/Ag2Te/Ni
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|a 3.6. Parameters of the impedance of Pt/RbAg4I5 polarizable heterostructure3.7. Experimental investigations of Au/RbAg4I5/Ag heterostructures -- 3.8. Measurements of the impedance of the Ni, Ti/RbAg4I5/Ag heterostructures -- 4. Mathematical and physical models of heterostructures based on superionic conductors -- 4.1. Synthesis of mathematical and electrical models of heterostructures with fractional-power frequency dependences of the impedance modulus on frequency � CPAE
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|a Annotation.
|b The monograph is concerned with the results of examination of the properties of superionic conductors and their heterostructures with different electrode materials. Special attention is given to the problems of changes in the characteristics of impedance in a wide frequency range. The authors present theoretical and experimental data on the properties of ionic, ionic-electronic conductors, reversible and polarised interfaces. The directions and specific examples of practical application of superionic conductors and heterostructures based on them are also discussed.
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|a English.
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|a eBooks on EBSCOhost
|b EBSCO eBook Subscription Academic Collection - Worldwide
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|a Superionic conductors.
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|a Ions
|x Migration and velocity.
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|a Conducteurs superioniques.
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|a Ions
|x Migration et vitesse.
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|a TECHNOLOGY & ENGINEERING
|x Electronics
|x Solid State.
|2 bisacsh
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|a TECHNOLOGY & ENGINEERING
|x Electronics
|x Semiconductors.
|2 bisacsh
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|a Ions
|x Migration and velocity
|2 fast
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|a Superionic conductors
|2 fast
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|i Print version:
|a Karamov, F.A.
|t Superionic conductors.
|d Cambridge, UK : Cambridge International Science Publishing, 2008
|z 9781904602262
|w (OCoLC)506873999
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