EP1535354A2

Cured composite materials for reactive metal battery electrolytes

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 8 July 2023, 3.2 years ago.

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38 claims: 4 independent, 34 dependent

  1. 1
    Claims of equivalent WO 2004008558 A2 CLAIMS What is claimed is:1. A molecular composite electrolyte material comprising: a silicate condensate framework, an electrolytic polymeric material contained within said silicate condensate framework, and a charge-carrying species contained within said polymeric material;wherein the electrolytic polymeric material has an outer surface, an interior bulk portion, and a skin portion at or near said outer surface, said skin portion substantially being comprised of crosslinked polymers to improve dimensional stability of said electrolyte material and to reduce adhesiveness of the electrolytic polymeric material outer surface, and the bulk portion substantially being comprised of un-crosslinked polymers so that conductivity of the electrolytic polymeric material is retained by maintaining polymer segmental motion and charge-carrying species mobility within said bulk portion.
  2. 11
    12. A method of manufacturing molecular composite electrolyte material, the method comprising:providing a composite electrolyte material comprising an ion-conductive polymer within a ceramic condensate framework, the composite electrolyte material having an outer surface and an interior bulk portion;irradiating an outer surface of said composite electrolyte material with ultraviolet radiation to form a crosslinked polymer skin portion only at or near said outer surface;and not irradiating said interior bulk portion;so that adhesiveness of said crosslinked polymer skin portion is reduced compared to adhesiveness of said bulk portion, and so that mobility of ions is maintained within said interior bulk portion.
  3. 18
    19. A battery comprising one or more electric-current-producing electrochemical cells, said cells comprising an anode, a cathode, and an electrolyte that is a coating on the anode, said electrolyte comprised of a polymer-ceramic material formed by the catalyzed condensation of a ceramic precursor in the presence of a solvated polymer material, wherein:the polymer-ceramic material has an outer surface, a skin portion at or near the outer surface, and an interior bulk portion, wherein the skin portion substantially comprises crosslinked polymers and the bulk portion comprises polymers that are substantially un-crosslinked.
  4. 35
    36. A composite solid polymer-ceramic electrolyte having improved conductivity, dimensional stability, and surface adherency, the electrolyte comprising:a molecular composite material comprising a polymer material incorporated within a ceramic network, wherein the polymer material is crosslinked only at or near its outer surface, and wherein: said electrolyte exhibits a conductivity of at least 10 "4 S/cm at about 20 - 25°C;and said electrolyte does not flow while subjected to pressures in the range of 475 g/cm 2 - 525 g/cm 2 in the range of 20 - 25°C.