EP2111660B2

Process for making a metal-air battery cell with a catalytic electrode

Abstract

A process for making a catalytic electrode, a process for making an electrochemical cell with a catalytic electrode, and an electrochemical cell made according to the process. The catalytic electrode has an active layer comprising a catalytic material, an electrically conductive material and a binder, and a gas diffusion layer including a material that is permeable to gas entering or escaping from the cell but essentially impermeable to electrolyte. The gas diffusion layer is adhered to the active layer by a patterned pressure bonding process to provide the catalytic electrode in which the entire gas diffusion area is adhered to the active layer, with areas of relatively high and relatively low adhesion. The electrode has a high overall bond strength, and the permeability of the gas diffusion layer remains high it has been adhered to the active layer to provide excellent high power capability.

EP2111660B2, drawing sheet 1
Sheet 1 of 4

Term

1.3 yearsleft in the term

Expires 26 December 2027.

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

14 claims: 1 independent, 13 dependent

  1. 1
    A process for making a metal-air battery cell comprising a catalytic electrode, the process being a non-spray, non-thermal decomposition process comprising the steps:- providing a nano-catalyst, comprising one or more transition metals, transition metal alloys or transition metal oxides;- providing a particulate carbon;- providing a binder material capable of binding particles of the carbon together;- mixing in air the nano-catalyst, carbon and binder together in a liquid medium comprising water and no alcohol in which the nano-catalyst is insoluble to form a catalytic mix, the mix comprising particles of the carbon with particles of the nano-catalyst adhered to internal and external surfaces of the carbon particles to form a catalytic mix, wherein the particles of the nano-catalyst comprise particles, the majority of which are partially oxidized before mixing with the carbon and binder, wherein the partially oxidized particles have a metal core with a complete oxide shell;- drying the catalytic mix to remove at least a portion of the water;- forming the dried catalytic mix into a catalytic layer;- combining the catalytic layer with a current collector and a hydrophobic layer to form the catalytic electrode;- adhering at least one separator layer to the catalytic electrode sheet;and - combining the catalytic electrode sheet with an opposing electrode comprising a metal as an active material in a cell housing;wherein: the separator layer is disposed between the catalytic layer and the opposing electrode;the hydrophobic layer comprises a hydrophobic sheet disposed between the catalytic layer and a fluid entry port in the cell housing, the fluid entry port allowing a fluid from outside the cell housing to enter the cell to react within the catalytic layer of the catalytic electrode.