EP0875950A2

Process of manufacturing porous separator for electrochemical power supply

Abstract

A method of forming a porous composite separator layer for an electrochemical cell comprising the steps of printing a thin layer of a separator precursor solution on the surface of one of the electrochemical cell electrodes, curing the thin layer of separator precursor solution so that it transforms into a microporous composite separator structure. In the preferred embodiment, the separator precursor solution is formulated as an ink comprising a silica aerogel filler material dispersed in a solution of polymer binder which is dissolved in a suitable solvent. The process allows the manufacture of thin and flexible composite separators which are conformally bonded to the underlying electrodes. <IMAGE>

EP0875950A2, drawing sheet 1
Sheet 1 of 2

Term

Term ended

Projected expiry passed 7 April 2018, 8.5 years ago.

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41 claims: 10 independent, 31 dependent

  1. 1
    A process for fabricating a porous composite separator for an electrochemical cell which includes an electrode, comprising the steps of:disposting a solution of separator precursor on said electrode wherein said solution comprises a solid particulate material and a polymer binder, the ratio of said binder to said solid particulate material is selected between 5/95 and 50/50;andtransforming said solution of separator precursor so that said solution of separator precursor forms a porous composite separator that adheres to said electrode.
  2. 8
    A process for fabricating a porous composite separator for an electrochemical cell which includes an electrode, comprising the steps of:disposing a solution of separator precursor on said electrode wherein said solution comprises 60% to 95% by mass of 1,2,3,4-Tetrahydronaphthalene (THN) solvent;andcuring said solution of separator precursor so that said solution of separator precursor forms a porous composite separator that adheres to said electrode.
  3. 11
    An electrochemical cell comprising:a first layer of electrode material;a layer of porous composite separator material disposed on said first layer of electrode material wherein said separator material adheres to said first layer of electrode material and wherein said separator material defines a plurality of micropores, said separator material comprises a composite structure comprised of a solid particulate material and a binder to hold said solid particulate material wherein the proportion of said binder to said solid particulate material is selected between 5/95 and 50/50;a second layer of electrode material superjacent to said porous composite layer;anda liquid electrolyte contained within said plurality of pores of said porous composite separator material so that said electrolyte provides a conducting medium between said first and second electrode layers.
  4. 16
    An electrochemical cell comprising:a first layer of electrode material;a layer of porous composite separator material disposed on said first layer of electrode material wherein said separator material adheres to said first layer of electrode material and wherein said separator material defines a plurality of micropores, said separator material comprises a composite structure which is formed by combining a solid particulate material, a polymer binder and 60% to 95% by mass 1,2,3,4-Tetrahydronaphthalene (THN) solvent to dissolve said polymer binder wherein the ratio of said binder to said solid particulate material is selected between 5/95 and 50/50;a second layer of electrode material superjacent to said porous composite layer, anda liquid electrolyte contained within said plurality of pores of said porous composite separator layer so that said electrolyte provides a conducting medium between said first and second electrode layers.
  5. 19
    An electrochemical cell having a liquid-electrolyte-permeable separator, comprising:an electrode;a layer of solid particulate material relying on said electrode for mechanical support;anda binder for said solid particulate material, the proportion of said binder to said solid particulate material is selected between 5/95 and 50/50 so that said liquid electrolyte permeates throughout said layer of solid particulate material.
  6. 22
    A process of forming a microporous separator for an electrochemical cell which includes an electrode, comprising:printing a continuous layer of said separator on said electrode by disposing a solution comprised of a solid particulate material, a binder for said solid particulate material and a solvent to dissolve said binder wherein the ratio of said binder to said solid particulate material is selected between 5/95 and 50/50;andcuring said layer to form micropores therein.
  7. 27
    An electrochemical cell having a liquid-electrolyte-permeable separator, comprising an electrode:a matrix of solid particulate material which is so thin that it would not be self supporting, which matrix is supported directly on said electrode;andsufficient binder to hold said solid particulate material in an open matrix which permits liquid electrolyte to permeate said layer of solid particulate material wherein the ratio of said binder to said solid particulate material is selected between 5/95 and 50/50.
  8. 30
    A process of forming a microporous separator for a electrochemical cell which includes an electrode, comprising:conformally bonding a continuous layer of said separator on said electrode by disposing a solution comprised of a solid particulate material, a polymer binder for said solid particulate material and 60% to 95% by mass 1,2,3,4-Tetrahydronaphthalene (THN) solvent to dissolve said polymer binder wherein the ratio of said polymer binder to said solid particulate material is selected between 5/95 and 50/50;andcuring said layer to form micropores therein.
  9. 35
    An electrochemical cell, comprising:an electrode;a discontiguous delicate layer of silica particles having voids therebetween supported directly on said electrode wherein said discontiguous layer comprises a binder to hold said silica particles and wherein the proportion of said binder to said silica particles is selected between 5/95 and 50/50;anda fluid organic solution electrolyte contained within said voids.
  10. 38
    An electrochemical cell, comprising:an electrode;a discontiguous delicate layer of solid particles having voids therebetween adjacent said electrode wherein said delicate layer comprises a binder to hold said solid particles and wherein the proportion of said binder to said solid particles is selected between 5/95 and 50/50;anda fluid organic solution electrolyte contained within said voids, wherein the ratio of the specific resistivity of said electrolyte to the specific resistivity of said electrolyte filled separator is greater then 0.10, using a complex impedance measurement over the frequency range of 100,000 Hz to 0.01 Hz and a sinusoidal voltage of 5 mV.