Produktbild: Supercapacitors

Supercapacitors Materials, Systems, and Applications

Fr. 217.00

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Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

13.03.2013

Abbildungen

farbige Illustrationen

Herausgeber

Francois Beguin + weitere

Verlag

Wiley-VCH

Seitenzahl

568

Maße (L/B/H)

24.9/17.4/3.2 cm

Gewicht

1326 g

Auflage

1. Auflage

Sprache

Englisch

ISBN

978-3-527-32883-3

Beschreibung

Portrait

François Béguin is Professor of Materials Chemistry at Orléans University, France. His research activities are devoted to chemical and electrochemical applications of carbon materials, with special attention to the development of nano-carbons with controlled porosity and surface functionality for applications in energy conversion/storage and environment protection. He has published over 230 papers, owns several patents, and his works have been cited over 3000 times. Beguin is the Director of two national programmes in the French Agency for Research (ANR), one on Energy Storage (Stock-E), the other on Hydrogen and Fuel Cells (H-PAC).

Elzbieta Frackowiak is a full professor at Poznan University of Technology, Poland. She is an electrochemist, with research interests focused on energy storage/conversion. Frackowiak has more than 150 publications and 2800 citations to her name, and is Chair Elect of Division 3 (Electrochemical Energy Conversion and Storage) of the International Society of Electrochemistry.

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

13.03.2013

Abbildungen

farbige Illustrationen

Herausgeber

Verlag

Wiley-VCH

Seitenzahl

568

Maße (L/B/H)

24.9/17.4/3.2 cm

Gewicht

1326 g

Auflage

1. Auflage

Sprache

Englisch

ISBN

978-3-527-32883-3

Herstelleradresse

Wiley-VCH GmbH
Boschstr. 12
69469 Weinheim
Deutschland
Email: cs-germany@wiley.com
Url: www.wiley-vch.de
Fax: +49 6201 606328

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Die Leseprobe wird geladen.
  • Produktbild: Supercapacitors
  • GENERAL PRINCIPLES OF ELECTROCHEMISTRY
    Equilibrium Electrochemistry
    Ionics
    Dynamic Electrochemistry

    GENERAL PROPERTIES OF ELECTROCHEMICAL CAPACITORS
    Introduction
    Capacitor Principles
    Electrochemical Capacitors
    Summary

    ELECTROCHEMICAL TECHNIQUES
    Electrochemical Apparatus
    Electrochemical Cell
    Electrochemical Interface: Supercapacitors
    Most Used Electrochemical Techniques

    ELECTRICAL DOUBLE-LAYER CAPACITORS AND CARBONS FOR EDLCS
    Introduction
    The Electrical Double Layer
    Types of Carbons Used for EDLCs
    Capacitance versus Pore Size
    Evidence of Desolvation of Ions
    Performance Limitations: Pore Accessibility or Saturation of Porosity
    Beyond the Double-Layer Capacitance in Microporous Carbons
    Conclusions

    MODERN THEORIES OF CARBON-BASED ELECTROCHEMICAL CAPACITORS
    Introduction
    Classical Theories
    Recent Developments
    Concluding Remarks

    ELECTRODE MATERIALS WITH PSEUDOCAPACITIVE PROPERTIES
    Introduction
    Conducting Polymers in Supercapacitor Application
    Metal Oxide/Carbon Composites
    Pseudocapacitive Effect of Heteroatoms Present in the Carbon Network
    Nanoporous Carbons with Electrosorbed Hydrogen
    Electrolytic Solutions - A Source of Faradaic Reactions
    Conclusions - Profits and Disadvantages of Pseudocapacitive Effects

    LI-ION-BASED HYBRID SUPERCAPACITORS IN ORGANIC MEDIUM
    Introduction
    Voltage Limitation of Conventional EDLCs
    Hybrid Capacitor Systems
    Material Design for NHC
    Conclusion

    ASYMMETRIC AND HYBRID DEVICES IN AQUEOUS ELECTROLYTES
    Introduction
    Aqueous Hybrid (Asymmetric) Devices
    Aqueous Asymmetric Electrochemical Capacitors
    Tantalum Oxide-Ruthenium Oxide Hybrid Capacitors
    Perspectives

    EDLCS BASED ON SOLVENT-FREE IONIC LIQUIDS
    Introduction
    Carbon Electrode/Ionic Liquid Interface
    Ionic Liquids
    Carbon Electrodes
    Supercapacitors
    Concluding Remarks

    MANUFACTURING OF INDUSTRIAL SUPERCAPACITORS
    Introduction
    Cell Components
    Cell Design
    Module Design
    Conclusions and Perspectives

    SUPERCAPACITOR MODULE SIZING AND HEAT MANAGEMENT UNDER ELECTRIC, THERMAL, AND AGING CONSTRAINTS
    Introduction
    Electrical Characterization
    Thermal Modeling
    Supercapacitor Lifetime
    Supercapacitor Module Sizing Methods
    Applications

    TESTING OF ELECTROCHEMICAL CAPACITORS
    Introduction
    Summaries of DC Test Procedures
    Applicatin of the Test Procedures to Carbon/Carbon Devices
    Testing of Hybrid, Pseudocapacitive Devices
    Relationships between AC Impedance and DC Testing
    Uncertainties in Ultracapacitor Data Interpretation
    Summary

    RELIABILITY OF ELECTROCHEMICAL CAPACITORS
    Introduction
    Reliability Basics
    Cell Reliability
    System Reliability
    Assessment of Cell Reliability
    Reliability of Practical Systems
    Increasing System Reliability
    System Design Example

    MARKET AND APPLICATIONS OF ELECTROCHEMICAL CAPACITORS
    Introduction: Principles and History
    Commerical Designs: DC Power Applications
    Energy Conservation and Energy Harvesting Applications
    Technology Combination Applications
    Electricity Grid Applications
    Conclusions