Nova Patents
EP0243653B1

Cathodic electrode.

Abstract

This record has no abstract on file.

Term

Term ended

Expired 19 March 2007, 19.5 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

16 claims: 8 independent, 8 dependent

  1. 1
    A self-standing microporous sheet product having first and second major surfaces and a thickness of less than 0.127 cm (50 mils) comprising with the proviso that no fibrillated polymer is present (a) from 70 - 98 weight percent of particulate material selected from electrochemically active chalcogenide and electrically conductive material and mixtures thereof alone or together with other metals;and (b) from about 2 - 30 weight percent of a high-density polyethylene having a weight average molecular weight of from about 150 000 to about 5 000 000;and (c) from 0 to 5 weight percent of an organic plasticizer for said polyethylene;said sheet having a void volume of at least about 10 volume percent and being capable of exhibiting conductivity of at least about 0.1 S/cm (reciprocal ohm/cm) when placed in an electrical circuit.
  2. 3
    The sheet product of Claims 1 or 2 wherein up to about 30 weight percent of said particulate material is composed of a conductive carbon black having an average particle size of from about 1 to 100 nm and the remainder of said particulate material is selected from at least one metal chalcogenide having a metal selected from titanium, zirconium, hafnium, niobium, manganese, copper, iron, tantalum, chromium, vanadium or mixtures thereof.
  3. 5
    The sheet product of Claims 1 or 2 wherein (a) said particulate is present in from about 90 to 94 weight percent and is composed of a metal chalcogenide having an average particle size of less than about 30 µm;(b) said polyethylene is present in from about 6 to 10 weight percent and has a weight average molecular weight of from about 200 000 to 500 000;and (c) said organic plasticizer is present in from 0 to 2 weight percent;said sheet product being substantially homogeneous, microporous and having a void volume of from 15 to 25 weight percent and being capable of exhibiting conductivity of at least 0.15 S/cm (reciprocal ohm/cm).
  4. 6
    The sheet product of any of Claims 1 to 5 which forms a unitary microporous structure and wherein said first major surface of the sheet product is covered with a substantially homogeneous composition composed of from about 7 to 50 weight percent of a polyolefin having a weight average molecular weight of at least about 100 000, from about 50 to 93 weight percent of a filler having a mean particle size of from about 0.01 to 10 µm and is inert with respect to a battery system in which the sheet product is to be used and from 0 to about 15 weight percent of an organic plasticizer for said polyolefin.
  5. 9
    The sheet product of any of Claims 6 to 8 wherein the polyethylene is present in 2 - 15 weight percent and has a weight average molecular weight of from about 200 000 to 500 000, the particulate material is present in 85 - 98 weight percent and is at least about 70 weight percent titanium disulfide, the plasticizer for the polyethylene is present in from 0 - 5 weight percent and is selected from a petroleum oil, and wherein the composition covering the first major surface is composed of polyolefin having a weight average molecular weight of from 150 000 to 500 000, an inert filler is selected from titania, alumina, silica and polyolefin plasticizer composed of a petroleum oil.
  6. 11
    An electrode suitable for use in a non-aqueous battery comprising at least one sheet product of Claims 1 - 5 and a current collector composed of a conductive material, said collector being in intimate contact with each of said at least one sheet product.
  7. 12
    An electrode suitable for use in a non-aqueous battery comprising at least one sheet product of Claims 6 to 10 and a current collector composed of a conductive material, said current collector being in intimate contact with the second major surface of each of said at least one sheet product.
  8. 14
    A process for forming a microporous sheet product suitable for use as a cathodic electrode comprising;(a) forming a substantially uniform mixture comprising from about 3 to 30 volume percent of polyethylene having a weight average molecular weight of from about 200 000 to about 500 000, from about 27 to about 76 volume percent of particulate metal chalcogenide material having an average particle size of less than about 20 µm and from about 20 to 70 volume percent of plasticizer for the polyethylene;(b) shaping the substantially uniform mixture into an initial sheet;(c) removing a portion of said plasticizer from the initial sheet to form a porous intermediate sheet having from 10 to 22 volume percent of plasticizer;(d) compressing the intermediate sheet to provide a substantially nonporous compressed intermediate sheet;and (e) removing substantially all of the plasticizer from said compressed intermediate sheet to form a microporous sheet product.