Advanced Batteries for Electronic Applications View Full Text


Ontology type: schema:Chapter     


Chapter Info

DATE

1991

AUTHORS

J. O. Besenhard , T. Bergknecht , M. Buser , P. Castella , M. Hess

ABSTRACT

The state of the art of advanced primary and secondary batteries designed for applications in electronic devices is presented. A main feature of this class of batteries is an nonaqueous electrolyte in order to reduce their self-discharge. As most of the applications are at very low rate, the self-discharge of traditional batteries with aqueous electrolytes may well exceed the current drain of the device. Many lithium batteries with liquid, polymer or solid electrolytes have proven or guaranteed storage and service times > 10 years, i.e., in the order of the typical life expectance of electronic devices. Some of the commercially available secondary ambient temperature lithium batteries last > 1000 shallow cycles (5–10% of nominal capacity). Polymer and solid electrolytes render possible cell designs without conventional containers. There are thin film “paper batteries” using Li+-conducting organic polymers as an electrolyte/separator combination and “integrated” all solid state microbatteries fabricated completely by evaporation and molecular beam deposition techniques. More... »

PAGES

477-488

Book

TITLE

Microelectrodes: Theory and Applications

ISBN

978-94-010-5416-4
978-94-011-3210-7

Author Affiliations

Identifiers

URI

http://scigraph.springernature.com/pub.10.1007/978-94-011-3210-7_29

DOI

http://dx.doi.org/10.1007/978-94-011-3210-7_29

DIMENSIONS

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