Solid State Electrochemistry
Fundamentals, Methodology and their Applications
(Sprache: Englisch)
In this first comprehensive handbook on this important and rapidly developing topic, the highly experienced editor combines fundamental information with a brief overview of recent advances, primarily targeting specialists working in this interdisciplinary field.
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Produktinformationen zu „Solid State Electrochemistry “
In this first comprehensive handbook on this important and rapidly developing topic, the highly experienced editor combines fundamental information with a brief overview of recent advances, primarily targeting specialists working in this interdisciplinary field.
Klappentext zu „Solid State Electrochemistry “
The only comprehensive handbook on this important and rapidly developing topic combines fundamental information with a brief overview of recent advances in solid state electrochemistry, primarily targeting specialists working in this scientific field.Particular attention is focused on the most important developments performed during the last decade, methodological and theoretical aspects of solid state electrochemistry, as well as practical applications. The highly experienced editor has included chapters with critical reviews of theoretical approaches, experimental methods and modeling techniques, providing definitions and explaining relevant terminology as necessary. Several other chapters cover all the key groups of the ion-conducting solids important for practice, namely cationic, protonic, oxygen-anionic and mixed conductors, but also conducting polymer and hybrid materials. Finally, the whole is rounded off by brief surveys of advances in the fields of fuel cells, solid-state batteries, electrochemical sensors, and other applications of ion-conducting solids.Due to the very interdisciplinary nature of this topic, this is of great interest to material scientists, polymer chemists, physicists, and industrial scientists, too.
Inhaltsverzeichnis zu „Solid State Electrochemistry “
PrefacePROGRESS AND PERSPECTIVES OF SOLID STATE ELECTROCHEMISTRY: FUNDAMENTALS AND APPLICATIONS
Solid vs. Liquid State
Thermodynamics and Kinetics of Charge Carriers
Usefulness of Electrochemical Cells
Materials Research Strategies: Bulk Defect Chemistry
Materials Research Strategies: Boundary Defect Chemistry
Nanoionics
SUPERIONIC MATERIALS: STRUCTURAL ASPECTS
Experimental and Computational Techniques
Families of Superionic Conductors
Current Status and Future Prospects
DEFECT EQUILIBRIA IN SOLIDS AND RELATED PROPERTIES
Defect Structure of Solids: Thermodynamic Approach
Relationships between Defect Equilibria and Charge Transfer in Solids
Practical Applications of Materials with Different Defect Structures
THE FUNDAMENTALS AND ADVANCES OF SOLID STATE ELECTROCHEMISTRY: INTERCALATION (INSERTION) AND DEINTERCALATION (EXTRACTION) IN SOLID STATE ELECTRODES
Thermodynamics of Intercalation and Deintercalation
Kinetics of Intercalation and Deintercalation
Methodological Overview
ION-CONDUCTING NANOCRYSTALS: THEORY, METHODS AND APPLICATIONS
Theoretical Aspects
Applications and Perspectives
Experimental Methods
Review of the Current Experimental Data and their Agreement with Theory
Overview and Areas for Future Development
SOLID STATE ELECTROCHEMICAL REACTIONS OF ELECTROACTIVE MICRO- AND NANO-PARTICLES IN A LIQUDI ELECTROLYTE ENVIRONMENT
Methodological Aspects
Examples and Applications
Theory
INTERFACIAL PROCESSES IN FUEL CELLS AND CERAMIC MEMBRANES
Current Understanding of and Models for Important Interfacial Processes
Continuum Modelling of Interfacial Processes
Characterization of Interfacial Processes using Patterned Electrodes
In Situ Probing and Mapping Interfacial Processes using Raman Spectroscopy
Multi-Scale Modelling of Interfacial Processes. Combination of First Principles and Continuum Modelling
HIGH-TEMPERTAURE APPLICATIONS OF SOLID ELECTROLYTES: GAS ANALYSIS, PUMPING AND CONVERSION
Transport Phenomena in Solid
... mehr
Electrolytes and Mixed Conductors
Electrode Processes
Applications
ALKALI METAL CATION AND PROTON CONDUCTORS: RELATIONSHIPS BETWEEN COMPOSITION, CRYSTAL STRUCTURE AND PROPERTIES
Principles of Classification and General Comments
Crystal-Chemistry Factors Affecting Cationic Conductivity
Crystal Structural Screening and Studies of the Conduction Paths
Conductors with Large Alkaline Ions
Lithium Ion Conductors
Proton Conductors
CATION CONDUCTING SOLIDS
Trivalent Cation Conductors
Tetravalent Cation Conductors
OXYGEN ION-CONDUCTING MATERIALS
Oxygen Ionic Transport In Acceptor-Doped Materials with Fluorite- and Perovskite-Related Structures
Zirconia-Based Solid Solutions
Doped Ceria
Perovskite-Type Solid Electrolytes and Mixed Conductors
Brownmillerites
Ruddlesden-Popper Type Compounds
Delta-Bi2O3- and Bi4V2O11-Based Ceramics
La2Mo2O9 and its Derivatives
Materials with Apatite Structure
Pyrochlores and Fluorite-Type (Y, Nb, Zr)O2-Delta
POLYMER AND HYBRID MATERIALS, THEIR ELECTROCHEMISTRY AND APPLICATIONS
Fundamentals
Fluorinated Ionomer Membranes
Non-Fluorinated Ionomer Membranes
High Temperature Membranes
ELECTRONICALLY CONDUCTING POLYMERS
A Survey of Solid Organic and Inorganic Electrochemically Active Materials
General Features of Doping-Induces Changes in Pi-Conjugated Polymers
The Thermodynamics and Kinetics of Electrochemical Doping of Organic Polymers and Ion-Insertion into Inorganic Host Materials
ELECTROCHEMICAL SENSORS: FUNDAMENTALS, KEY MATERIALS AND APPLICATIONS
Operation Principles
Materials Challenge
Applications
HIGH-TEMPERATURE APPLICATIONS OF SOLID ELECTROLYTES: GAS ANALYSIS, PUMPING AND CONVERSION
Transport Phenomena in Solid Electrolytes and Mixed Conductors
Electrode Processes
Applications
Electrode Processes
Applications
ALKALI METAL CATION AND PROTON CONDUCTORS: RELATIONSHIPS BETWEEN COMPOSITION, CRYSTAL STRUCTURE AND PROPERTIES
Principles of Classification and General Comments
Crystal-Chemistry Factors Affecting Cationic Conductivity
Crystal Structural Screening and Studies of the Conduction Paths
Conductors with Large Alkaline Ions
Lithium Ion Conductors
Proton Conductors
CATION CONDUCTING SOLIDS
Trivalent Cation Conductors
Tetravalent Cation Conductors
OXYGEN ION-CONDUCTING MATERIALS
Oxygen Ionic Transport In Acceptor-Doped Materials with Fluorite- and Perovskite-Related Structures
Zirconia-Based Solid Solutions
Doped Ceria
Perovskite-Type Solid Electrolytes and Mixed Conductors
Brownmillerites
Ruddlesden-Popper Type Compounds
Delta-Bi2O3- and Bi4V2O11-Based Ceramics
La2Mo2O9 and its Derivatives
Materials with Apatite Structure
Pyrochlores and Fluorite-Type (Y, Nb, Zr)O2-Delta
POLYMER AND HYBRID MATERIALS, THEIR ELECTROCHEMISTRY AND APPLICATIONS
Fundamentals
Fluorinated Ionomer Membranes
Non-Fluorinated Ionomer Membranes
High Temperature Membranes
ELECTRONICALLY CONDUCTING POLYMERS
A Survey of Solid Organic and Inorganic Electrochemically Active Materials
General Features of Doping-Induces Changes in Pi-Conjugated Polymers
The Thermodynamics and Kinetics of Electrochemical Doping of Organic Polymers and Ion-Insertion into Inorganic Host Materials
ELECTROCHEMICAL SENSORS: FUNDAMENTALS, KEY MATERIALS AND APPLICATIONS
Operation Principles
Materials Challenge
Applications
HIGH-TEMPERATURE APPLICATIONS OF SOLID ELECTROLYTES: GAS ANALYSIS, PUMPING AND CONVERSION
Transport Phenomena in Solid Electrolytes and Mixed Conductors
Electrode Processes
Applications
... weniger
Autoren-Porträt von Vladislav V. Kharton
Vladislav Kharton is a principal investigator at the Department of Ceramics and Glass Engineering, University of Aveiro (Portugal). Having received his doctoral degree in physical chemistry from the Belarus State University in 1993, he has published over 230 scientific papers in international SCI journals, including 7 reviews, and coauthored over 40 papers in other refereed journals and volumes, 2 books and 2 patents. He is a topical editor of the Journal of Solid State Electrochemistry, and member of the editorial boards of Materials Letters, The Open Condensed Matter Physics Journal, and Processing and Application of Ceramics. In 2004, he received the Portuguese Science Foundation prize for Scientific Excellence.
Bibliographische Angaben
- Autor: Vladislav V. Kharton
- 2009, XXI, 506 Seiten, 8 farbige Abbildungen, 237 Schwarz-Weiß-Abbildungen, Maße: 17,5 x 25 cm, Gebunden, Englisch
- Herausgegeben: Vladislav V. Kharton
- Verlag: Wiley-VCH
- ISBN-10: 352732318X
- ISBN-13: 9783527323180
- Erscheinungsdatum: 14.07.2009
Sprache:
Englisch
Rezension zu „Solid State Electrochemistry “
"It will soon be definitely acclaimed as the only comprehensive handbook on this important and rapidly developing topic combining fundamental information with a brief overview of recent advances and intriguing problems in solid state electrochemistry, primarily targeting specialists working in this scientific field." (Current Engineering Practice, 2010) "In summary, the book succeeds in providing the reader with a concise introduction to a broad and diverse research area. The discussion and references can be used expand any topic of interest with the advantages and disadvantages of synthetic methods, materials, and approaches for many solid-state electrochemical systems." (JACS, 2010) CHEMICAL & ENGINEERING NEWS CHEMICAL ABSTRACTS SERVICE CHOICE JOURNAL OF AMERICAN CHEMICAL SOCIETY JOURNAL OF THE ELECTROCHEMICAL SOCIETY Current Engineering Practice
Pressezitat
"It will soon be definitely acclaimed as the only comprehensive handbook on this important and rapidly developing topic combining fundamental information with a brief overview of recent advances and intriguing problems in solid state electrochemistry, primarily targeting specialists working in this scientific field." ( Current Engineering Practice , 2010)"In summary, the book succeeds in providing the reader with a concise introduction to a broad and diverse research area. The discussion and references can be used expand any topic of interest with the advantages and disadvantages of synthetic methods, materials, and approaches for many solid-state electrochemical systems." ( JACS, 2010)
CHEMICAL & ENGINEERING NEWS
CHEMICAL ABSTRACTS SERVICE
CHOICE
JOURNAL OF AMERICAN CHEMICAL SOCIETY
JOURNAL OF THE ELECTROCHEMICAL SOCIETY
Current Engineering Practice
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