EP1535950A1

Dispersion of ion-exchange polymer, process for producing the same, and use thereof

Abstract

A thickened ion exchange polymer dispersion is obtained by applying ultrasonic vibration or a shearing force to an ion exchange polymer dispersion having a fluorinated polymer having sulfonic acid groups as an ion exchange polymer uniformly dispersed in a dispersion medium so that the viscosity of the dispersion at 25 DEG C at a shear rate of 10 (1/s) increases 2-2000 times in a thickening step. When formed into a membrane, the dispersion can forms an ion exchange membrane having a uniform and small thickness, high strength, which is free from cracking and shows constant swelling in water and steam. Further, a layer formed by applying a coating solution containing this dispersion and a catalyst powder comprising catalyst metal particles and a carbon support loaded with the catalyst metal particles to a substrate can be used to prepare a membrane-electrode assembly as a catalyst layer for at least one of the cathode and the anode by providing the catalyst layer adjacently to an ion exchange membrane. Because the catalyst layer is highly strong, has few defects and is excellently smooth, a high-performance membrane-electrode assembly for solid polymer electrolyte fuel cells can be obtained.

EP1535950A1, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Projected expiry passed 8 July 2023, 3.2 years ago.

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21 claims: 4 independent, 17 dependent

  1. 1
    A process for producing an ion exchange polymer dispersion which comprises a thickening step of thickening an ion exchange polymer dispersion A having a fluorinated polymer having sulfonic acid groups as an ion exchange polymer uniformly dispersed in a dispersion medium into an ion exchange polymer dispersion B by applying ultrasonic vibration or a shearing force to the dispersion A so that the viscosity of the dispersion A at 25°C at a shear rate of 10 (1/s) increases 2-2000 times.
  2. 11
    An ion exchange polymer dispersion having a fluorinated polymer having sulfonic acid groups as an ion exchange polymer uniformly dispersed in a dispersion medium, which has a viscosity of from 1000 to 100000 mPa· s at 25°C at a shear rate of 10 (1/s).
  3. 14
    A process for producing an ion exchange membrane which comprises thickening an ion exchange polymer dispersion A having a fluorinated polymer having sulfonic acid groups as an ion exchange polymer uniformly dispersed in a dispersion medium into an ion exchange polymer dispersion B thickened by applying ultrasonic vibration or a shearing force to the dispersion A so that the viscosity of the dispersion A at 25°C at a shear rate of 10 (1/s) increases 2-2000 times, and forming the ion exchange polymer dispersion B into a membrane.
  4. 18
    A process for producing a membrane-electrode assembly for solid polymer electrolyte fuel cells which comprises a cathode and an anode each having a catalyst layer containing an ion exchange polymer and a catalyst powder comprising catalyst metal particles and a carbon support loaded with the catalyst metal particles, and a polymer electrolyte membrane interposed between the cathode and the anode, said process comprising thickening an ion exchange polymer dispersion A having a fluorinated polymer having sulfonic acid groups as an ion exchange polymer uniformly dispersed in a dispersion medium into an ion exchange polymer dispersion B by applying ultrasonic vibration or a shearing force to the dispersion A so that the viscosity of the dispersion A at 25°C at a shear rate of 10 (1/s) increases 2-2000 times;preparing a coating solution containing the ion exchange polymer dispersion B and the catalyst powder comprising catalyst metal particles and carbon support loaded with the catalyst metal particles;coating a substrate with the coating solution to form a layer;and providing the layer adjacently to the polymer electrolyte membrane as the catalyst layer for at least one of the cathode and the anode.