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  • © 1990

Solid State Microbatteries

Part of the book series: NATO Science Series B: (NSSB, volume 217)

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Table of contents (27 chapters)

  1. Front Matter

    Pages i-x
  2. Amorphous Room Temperature Polymer Solid Electrolytes

    • W. Wieczorek, K. Such, J. Przyluski
    Pages 151-155
  3. Technology and Physics of Thin Film Insertion Compounds

    • C. Julien, M. Balkanski
    Pages 233-267
  4. Insertion Cathodes for Solid State Microbatteries

    • M. Balkanski, C. Julien
    Pages 269-292
  5. Kinetics Studies of Lithium Insertion in In-Se Thin Films

    • I. Samaras, C. Julien, M. Balkanski
    Pages 293-296
  6. The Role of NiPS3 as a Cathode in Secondary Lithium Solid State Batteries

    • I. Saikh, C. Julien, M. Balkanski
    Pages 297-300
  7. Theory and Applications of Amorphous Solid for Electrochemical Cells

    • J. L. Souquet, A. Kone, M. Levy
    Pages 301-322
  8. Silver Gallium Thiohypodiphosphate Glasses

    • Claus Wibbelmann, Brian Munro
    Pages 323-328
  9. Modeling, Fabrication, and Development of Miniature Ion Sensors

    • Robert F. Savinell, Chi-Jin Chen, Chung-Chiun Liu
    Pages 329-342
  10. Solid State Batteries

    • James R. Akridge
    Pages 343-352

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).

Editors and Affiliations

  • Eveready Battery Co., Inc., Westlake, USA

    James R. Akridge

  • Université Pierre et Marie Curie, Paris, France

    Minko Balkanski

Bibliographic Information

Buy it now

Buying options

eBook USD 129.00
Price excludes VAT (USA)
  • Available as PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book USD 169.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info
Hardcover Book USD 169.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Other ways to access