EP1237166A2

Dye-sensitized solar cells and dye-sensitized solar cell modules

Abstract

A dye-sensitized solar cell 10 is a dye-sensitized solar cell which comprises a photo-electrode WE having a semiconductor electrode 2 and a transparent electrode 1 placed on a photoreceptive surface F2 of the semiconductor electrode 2; and a counter electrode CE and in which the semiconductor electrode is opposed through an electrolyte E to the counter electrode, wherein the photoreceptive surface of the semiconductor electrode is formed so that an angle θ of incidence of light incident to the photoreceptive surface of the semiconductor electrode from a direction of a normal to a photoreceptive surface F1 of the transparent electrode falls within a range of 30 to 80°.

EP1237166A2, drawing sheet 1
Sheet 1 of 13

Term

Term ended

Projected expiry passed 27 February 2022, 4.6 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

10 claims: 4 independent, 6 dependent

  1. 1
    A dye-sensitized solar cell which comprises a photo-electrode having a semiconductor electrode and a transparent electrode placed on a photoreceptive surface of the semiconductor electrode, and a counter electrode and in which said semiconductor electrode is opposed through an electrolyte to said counter electrode,    wherein said photoreceptive surface of said semiconductor electrode is formed so that an angle of incidence of light incident to said photoreceptive surface of said semiconductor electrode from a direction of a normal to a photoreceptive surface of said transparent electrode falls within a range of 30 to 80°.
  2. 2
    A dye-sensitized solar cell which comprises a photo-electrode having a semiconductor electrode and a transparent electrode placed on a photoreceptive surface of the semiconductor electrode, and a counter electrode and in which said semiconductor electrode is opposed through an electrolyte to said counter electrode,    wherein said transparent electrode is provided with lightguide means for changing a traveling direction of light incident from the outside to a photoreceptive surface of said transparent electrode so that an angle of incidence of the light traveling in said transparent electrode to enter said photoreceptive surface of said semiconductor electrode falls within a range of 30 to 80°.
  3. 3
    The dye-sensitized solar cell according to Claim 2, wherein said lightguide means is an optical waveguide layer formed on said photoreceptive surface of said transparent electrode and comprised of a plurality of glass fibers,    wherein each said glass fiber is placed with a predetermined inclination relative to a direction of a normal to said photoreceptive surface of said semiconductor electrode so that the angle of incidence of the light incident to said photoreceptive surface of said semiconductor electrode falls within the range of 30 to 80°.
  4. 4
    The dye-sensitized solar cell according to Claim 2, wherein said lightguide means is an optical waveguide layer formed on said photoreceptive surface of said transparent electrode,    wherein a plurality of projections with reflective facets for changing the traveling direction of the light traveling in the optical waveguide layer are formed in a lower region of said optical waveguide layer in contact with said photoreceptive surface of said transparent electrode,    wherein each said reflective facet is formed with a predetermined inclination relative to said photoreceptive surface of said transparent electrode so that the angle of incidence of the light incident to said photoreceptive surface of said semiconductor electrode falls within the range of 30 to 80°.
  5. 5
    The dye-sensitized solar cell according to Claim 4, wherein a plurality of collecting electrodes are further provided on said photoreceptive surface of said semiconductor electrode,    wherein each said reflective facet is formed with the predetermined inclination relative to said photoreceptive surface of said transparent electrode so that the angle of incidence of the light incident to said photoreceptive surface of said semiconductor electrode falls within the range of 30 to 80° and so that said light selectively impinges on areas without said collecting electrodes on said photoreceptive surface of said semiconductor electrode.
  6. 6
    The dye-sensitized solar cell according to Claim 2, wherein said lightguide means is a plurality of reflective portions with reflective facets formed in said transparent electrode and adapted to change the traveling direction of the light traveling in said transparent electrode,    wherein each said reflective facet is formed with a predetermined inclination relative to a direction of a normal to said photoreceptive surface of said semiconductor electrode so that the angle of incidence of the light incident to said photoreceptive surface of said semiconductor electrode falls within the range of 30 to 80°.
  7. 7
    The dye-sensitized solar cell according to Claim 2, wherein said lightguide means is a plurality of projections with reflective facets formed on saidphotoreceptive surface of said transparent electrode and adapted to change the traveling direction of the light incident from a direction of a normal to the photoreceptive surface of said semiconductor electrode,    wherein each said reflective facet is formed with a predetermined inclination relative to the direction of the normal to said photoreceptive surface of said semiconductor electrode so that the angle of incidence of the light incident to said photoreceptive surface of said semiconductor electrode falls within the range of 30 to 80°.
  8. 8
    The dye-sensitized solar cell according to Claim 2, wherein said lightguide means is a plurality of diffraction grating stripes formed on the photoreceptive surface of said transparent electrode and made of a transparent material having a refractive index higher than that of said transparent electrode,    wherein said diffraction grating stripes diffract the light incident from a direction of a normal to said photoreceptive surface of said semiconductor electrode, into predetermined angles so that angles of incidence of the light incident to said photoreceptive surface of said semiconductor electrode fall within the range of 30 to 80°.
  9. 9
    A dye-sensitized solar cell which comprises a photo-electrode having a semiconductor electrode and a transparent electrode placed on a photoreceptive surface of the semiconductor electrode, and a counter electrode and in which said semiconductor electrode is opposed through an electrolyte to said counter electrode,    wherein a plurality of collecting electrodes are provided on said photoreceptive surface of said semiconductor electrode,    wherein said photoreceptive surface of said semiconductor electrode is formed so that an angle of incidence of light traveling in said transparent electrode to enter said photoreceptive surface of said semiconductor electrode falls within a range of 30 to 80°, and    wherein a photoreceptive surface of said transparent electrode is formed so that said light selectively impinges on areas without said collecting electrodes on said photoreceptive surface of said semiconductor electrode.
  10. 10
    A dye-sensitized solar cell module comprising a plurality of dye-sensitized solar cells placed on a base, each said dye-sensitized solar cell comprising a photo-electrode having a semiconductor electrode and a transparent electrode placed on a photoreceptive surface of the semiconductor electrode, and a counter electrode and in each said dye-sensitized solar cell said semiconductor electrode being opposed through an electrolyte to said counter electrode,    wherein each said dye-sensitized solar cell is placed so that an angle of incidence of light incident to each said dye-sensitized solar cell from a direction of a normal to an installation surface of said base falls within a range of 30 to 80°.