IP Library Granted Patent US 9,530,572
Granted Patent B2
US 9,530,572 · App. 15/089,597 · Granted Dec 27, 2016

Solar cell device

Inventor: Jonathan Goldstein (Jerusalem, IL)
Assignee: 3GSOLAR PHOTOVOLTAICS LTD.
H01G9/2077H01G9/2018H01G9/2031
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Quick Facts
Patent No.
US 9,530,572
App. No.
15/089,597
Granted
Dec 27, 2016
Kind
B2
Abstract

A photovoltaic cell including: (a) a housing including an at least partially transparent cell wall having an interior surface; (b) an electrolyte, disposed within the cell wall, and containing an iodide based species; (c) a transparent electrically conductive coating disposed on the interior surface; (d) an anode disposed on the conductive coating, the anode including: (i) a porous film containing titania, the porous film adapted to make intimate contact with the iodide based species, and (ii) a dye, absorbed on a surface of the porous film, the dye and the porous film adapted to convert photons to electrons; (e) a cathode disposed on an interior surface of the housing, and disposed substantially opposite the anode; (f) electrically-conductive metallic wires, disposed at least partially within the cell, the wires electrically contacting the anode and the electrically conductive coating, and (g) a second electrically conductive coating including an inorganic binder and an inorganic electrically conductive filler, the second coating bridging between and electrically communicating between each of the wires and the transparent coating, the wires adapted to boost collection of a current generated by the cell.

Claims (29)

1. A photovoltaic dye cell for converting a light source into an electrical current, the photovoltaic dye cell comprising:

(a) a housing for the photovoltaic dye cell, said housing including an at least partially transparent cell wall, said cell wall having a first interior surface and a second interior surface;

(b) an electrolyte, disposed within said cell wall, between said first and second interior surfaces, said electrolyte containing a redox species;

(c) an at least partially transparent electrically conductive coating, disposed on said first interior surface, within the photovoltaic dye cell;

(d) an anode disposed on said at least partially transparent electrically conductive coating, said anode including:

a porous film, and

a dye, absorbed on a surface of said porous film, said dye, said electrolyte, and said porous film adapted to convert photons to electrons;

(e) a cathode disposed within said housing, substantially opposite said anode, and between said anode and said second interior surface, said cathode having a catalytic surface facing said anode, said catalytic surface adapted to catalyze a redox reaction of said redox species;

(f) a plurality of elongated electrically-conductive metallic conductor structures, disposed at least partially within the photovoltaic cell, said elongated electrically-conductive metallic conductor structures directly contacting said at least partially transparent electrically conductive coating and electrically connected with said anode; and

(g) a current collection element, electrically connected to each of said elongated electrically-conductive metallic conductor structures, and configured to remove, via said elongated electrically-conductive metallic conductor structures, the current produced by the photovoltaic dye cell.

2. The photovoltaic dye cell of claim 1 , the photovoltaic dye cell being sealed by an adhesive sealant layer disposed at edges of the photovoltaic dye cell.

3. The photovoltaic dye cell of claim 1 , said cathode including a conductive carbon layer.

4. The photovoltaic dye cell of claim 1 , wherein said redox species is an iodine based redox species.

5. The photovoltaic dye cell of claim 1 , said cathode including an electrically conducting porous mat.

6. The photovoltaic dye cell of claim 5 , said electrically conducting porous mat including a carbon fiber veil.

7. The photovoltaic dye cell of claim 5 , said electrically conducting porous mat including a titanium mesh.

8. The photovoltaic dye cell of claim 5 , said electrically conducting porous mat including a coating including carbon.

9. The photovoltaic dye cell of claim 5 , said electrically conducting porous mat including a coating including graphite.

10. The photovoltaic dye cell of claim 1 , wherein each of said elongated electrically-conductive metallic conductor structures includes a metal strip.

11. The photovoltaic dye cell of claim 1 , wherein each of said elongated electrically-conductive metallic conductor structures includes a metal wire.

12. The photovoltaic dye cell of claim 1 , wherein said first interior surface and said second interior surface are made of a glass.

13. The photovoltaic dye cell of claim 1 , wherein at least one of said first interior surface and said second interior surface is made of a glass.

14. The photovoltaic dye cell of claim 1 , wherein at least one of said first interior surface and said second interior surface is made of a plastic.

15. The photovoltaic dye cell of claim 1 , wherein at least one of said first and second interior surfaces includes a tin oxide coated glass.

16. The photovoltaic dye cell of claim 1 , wherein said catalytic surface includes platinum.

17. The photovoltaic dye cell of claim 13 , wherein each of said elongated electrically-conductive metallic conductor structures includes a metal strip.

18. The photovoltaic dye cell of claim 13 , wherein each of said elongated electrically-conductive metallic conductor structures includes a metal wire.

19. The photovoltaic dye cell of claim 18 , wherein said catalytic surface includes platinum.

20. The photovoltaic dye cell of claim 12 , wherein each of said elongated electrically-conductive metallic conductor structures includes a metal wire.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 31, 2016
From: GOLDSTEIN, JONATHAN
To: 3GSOLAR PHOTOVOLTAICS LTD.
Reel/Frame 038847/0563 →
Priority Claims (1)
IL 153895 · Jan 12, 2003 · national
Continuity (10)
Continuation 14658661 · Mar 16, 2015
Continuation 14082460 · Nov 18, 2013
Continuation 12814523 · Jun 14, 2010
Continuation In Part 12744914
Continuation In Part 10754584 · Jan 12, 2004
Continuation In Part 12618741 · Nov 15, 2009
Continuation In Part PCTIL2008000671 · May 15, 2008
Provisional Application 60990307 · Nov 27, 2007
Provisional Application 60917941 · May 15, 2007
Related Publication 20160293344A1 · Oct 6, 2016