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Nato Science Series B:

Solid State Microbatteries

Editors: Akridge, James R., Balkanski, M. (Eds.)

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About this book

This Advanced Study Institute on the topic of SOLID STATE MICROBATTERIES is the third and final institute on the general theme of a field of study now termed "SOLID STATE IONICS". The institute was held in Erice, Sicily, Italy, 3 - 15 July 1988. The objective was to assemble in one location individuals from industry and academia expert in the fields of microelectronics and solid state ionics to determine the feasibility of merging a solid state microbattery with microelectronic memory. Solid electrolytes are in principle amenable to vapor deposition, RF or DC sputtering, and other techniques used to fabricate microelectronic components. A solid state microbattery 1 1 mated on the same chip carrier as the chip can provide on board memory backup power. A solid state microbattery assembled from properly selected anode/solid electrolyte/cathode materials could have environmental endurance properties equal or superior to semiconductor memory chips. Lectures covering microelectronics, present state-of-art solid state batteries, new solid electrolyte cathode materials, theoretical and practical techniques for fabrication of new solid electrolytes, and analytical techniques for study of solid electrolytes were covered. Several areas where effort is required for further understanding of materials in pure form and their interactions with other materials at interfacial contact points were identified. Cathode materials for solid state batteries is one particular research area which requires attention. Another is a microscopic model of conduction in vitreous solid electrolytes to enhance the thermodynamic macroscopic Weak ~lectrolyte Iheory (WET).

Table of contents (27 chapters)

Table of contents (27 chapters)
  • Overview of Aqueous and Nonaqueous Batteries and Semiconductors

    Pages 1-39

    Trumbore, Forrest A.

  • Thin Film Technology and Characterization: Their Use in Microionic Devices

    Pages 41-58

    Ribes, M.

  • The Physical Formation Processes of Thin Films, Their Characterization by XPS, AES and SIMS and Their Applications in Microbatteries

    Pages 59-97

    Levasseur, Alain (et al.)

  • Study and Characterization of Thin Films of Conductive Glasses With a View to Application in Microionics

    Pages 99-102

    Sarradin, J. (et al.)

  • Chemistry, Physics and Applications of Polymeric Solid Electrolytes to Microbatteries

    Pages 103-143

    Scrosati, Bruno

Buy this book

eBook $139.00
price for USA in USD
  • ISBN 978-1-4899-2263-2
  • Digitally watermarked, DRM-free
  • Included format: PDF
  • ebooks can be used on all reading devices
  • Immediate eBook download after purchase
Hardcover $249.99
price for USA in USD
  • ISBN 978-0-306-43505-8
  • Free shipping for individuals worldwide
  • Immediate ebook access, if available*, with your print order
  • Usually dispatched within 3 to 5 business days.
Softcover $179.99
price for USA in USD
  • ISBN 978-1-4899-2265-6
  • Free shipping for individuals worldwide
  • Immediate ebook access, if available*, with your print order
  • Usually dispatched within 3 to 5 business days.
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Bibliographic Information

Bibliographic Information
Book Title
Solid State Microbatteries
Editors
  • James R. Akridge
  • M. Balkanski
Series Title
Nato Science Series B:
Series Volume
217
Copyright
1990
Publisher
Springer US
Copyright Holder
Springer Science+Business Media New York
eBook ISBN
978-1-4899-2263-2
DOI
10.1007/978-1-4899-2263-2
Hardcover ISBN
978-0-306-43505-8
Softcover ISBN
978-1-4899-2265-6
Series ISSN
0258-1221
Edition Number
1
Number of Pages
X, 440
Topics

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