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Advanced double layer capacitorsThere is a need for large amounts of power to be delivered rapidly in a number of airborne and space systems. Conventional, portable power sources, such as batteries, are not suited to delivering high peak power pulses. The charge stored at the electrode-electrolyte double layer is, however, much more assessible on a short time scale. Devices exploiting this concept were fabricated using carbon and metal oxides (Pinnacle Research) as the electrodes and sulfuric acid as the electrolyte. The approach reported, replaces the liquid sulfuric acid electrolyte with a solid ionomer electrolyte. The challenge is to form a solid electrode-solid ionomer electrolyte composite which has a high capacitance per geometric area. The approach to maximize contact between the electrode particles and the ionomer was to impregnate the electrode particles using a liquid ionomer solution and to bond the solvent-free structure to a solid ionomer membrane. Ruthenium dioxide is the electrode material used. Three strategies are being pursued to provide for a high area electrode-ionomer contact: mixing of the RuOx with a small volume of ionomer solution followed by filtration to remove the solvent, and impregnation of the ionomer into an already formed RuOx electrode. RuOx powder and electrodes were examined by non-electrochemical techniques. X-ray diffraction has shown that the material is almost pure RuO2. The electrode structure depends on the processing technique used to introduce the Nafion. Impregnated electrodes have Nafion concentrated near the surface. Electrodes prepared by the evaporation method show large aggregates of crystals surrounded by Nafion.
Document ID
19890013622
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Sarangapani, S.
(Giner, Inc. Waltham, MA, United States)
Lessner, P.
(Giner, Inc. Waltham, MA, United States)
Forchione, J.
(Giner, Inc. Waltham, MA, United States)
Laconti, A. B.
(Giner, Inc. Waltham, MA, United States)
Date Acquired
September 5, 2013
Publication Date
January 1, 1989
Publication Information
Publication: NASA, Lewis Research Center, Space Electrochemical Research and Technology Conference: Abstracts
Subject Category
Electronics And Electrical Engineering
Accession Number
89N22993
Funding Number(s)
CONTRACT_GRANT: N00014-88-0391
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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