Manufacturing method for electrode

Coating processes – Solid particles or fibers applied – Applying superposed diverse coatings or coating a coated base

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205 59, 427122, 427124, 4271261, 427180, 427249, 427250, 4272553, 4272557, 427343, 427404, 4274301, 4274192, B05D 136

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active

052905926

ABSTRACT:
A manufacturing method for an electrode in which ultra fine particles of active material formed in gas by an evaporation method are carried in a gas flow and blown onto a surface of a substrate, so that an electrode comprising a thin film of active material is formed on the surface of the substrate. A manufacturing method for an electrode-electrolyte composite in which ultra fine particles of active material formed in gas by the evaporation method are carried in a gas flow and blown onto a surface of a film comprising a solid electrolyte, so that an electrode comprising a thin film of active material is formed on the surface of the film. The above manufacturing method for an electrode can provide an anode or a cathode comprising an ultra thin film having an uniform thickness of under 10 microns inclusive, for example. The above manufacturing method for an electrode-electrolyte composite can provide, with good productivity, an electrode-electrolyte composite in which an adhesion of the electrode with the electrolyte is excellent and the electrode is of an ultra thin type having an uniform thickness.

REFERENCES:
patent: 4236991 (1980-12-01), Backhurst et al.
patent: 4959242 (1990-09-01), Itoh
Patent Abstracts of Japan, vol. 14, No. 537, Nov. 27, 1990.
Patent Abstracts of Japan, vol. 8, No. 181, Aug. 21, 1984.
Japanese Journal of Applied Physics 23, L910, 1984 S. Kashu et al., "Deposition of Ultra Fine Particles Using a Gas Jet".
Journal of the Surface Science Society of Japan, 8, 335, 1987 M. Oda, "Preparation of Ultra Fine Particles with Gas Evaporation Method and Their Application".
Applied Physics, 54, 687, 1985 C. Hayashi, "Gas Deposition of Ultra Fine Particles".

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