EP1540754B1

Battery with increased electrode interfacial surface area and increased active materials

Abstract

An alkaline battery cell with improved high rate and high power discharge capacity is provided, without sacrificing capacity at low rate and low power, by adding at least a second anode or cathode, reducing the effective maximum electrode thicknesses, and increasing the active material density in one or more electrodes.

EP1540754B1, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Expired 17 September 2023, 3 years ago.

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

34 claims: 2 independent, 32 dependent

  1. 1
    A primary electrochemical battery cell comprising a container, a first positive electrode comprising a manganese oxide and a carbon, a first negative electrode comprising zinc, a separator disposed between adjacent positive and negative electrodes, and an electrolyte comprising an aqueous alkaline solution; wherein:the cell comprises a second of at least one of the positive and negative electrodes;all first and second electrodes are disposed coaxially with respect to each other, with alternating polarities, such that each of the first and second electrodes has at least one surface that interfaces with another of the coaxial electrodes through the separator;and at least the first positive electrode contains greater than 60 percent but not greater than 80 percent solid materials by volume.
  2. 28
    The battery cell of any one of claims 1 to 27 comprising a container, a first positive electrode comprising a manganese oxide and a carbon, a first negative electrode comprising zinc, a separator disposed between adjacent positive and negative electrodes, and an electrolyte comprising an aqueous alkaline solution; wherein:the cell comprises a second of at least one of the positive and negative electrodes;the electrodes are disposed coaxially with respect to each other, with alternating positive and negative electrodes, such that each of the first and second electrodes has at least one surface that interfaces with another of the coaxial electrodes through the separator;at least the first positive electrode contains greater than 60 percent but not greater than 80 percent solid materials by volume;each coaxial positive electrode has a theoretical capacity and an interfacial surface area;and a ratio of the total theoretical capacity to the total interfacial surface area of the combined coaxial positive electrodes is 180 mAh : 1 cm 2 to 220 mAh : 1 cm 2 .