Photoelectric conversion element, wiring board for photoelectric conversion element, method for manufacturing photoelectric conversion element and photoelectric conversion structure
US-2016380221-A1 · Dec 29, 2016 · US
US9251965B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9251965-B2 |
| Application number | US-201013521362-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 29, 2010 |
| Priority date | Jan 12, 2010 |
| Publication date | Feb 2, 2016 |
| Grant date | Feb 2, 2016 |
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A wet-type solar battery including a support composed of a light transmissive material and a stack in which a conductive layer, a photoelectric conversion layer containing a porous semiconductor, a porous insulating layer, and a counter electrode conductive layer are stacked in this order is provided. The conductive layer is divided into a first region including a portion where the photoelectric conversion layer is to be formed on a surface thereof and a second region where the photoelectric conversion layer is not to be formed. A protection film for preventing internal short-circuiting, which is not greater in film thickness than the photoelectric conversion layer, is formed in at least a part around the photoelectric conversion layer on the surface of the first region.
Opening claim text (preview).
The invention claimed is: 1. A wet-type solar battery, comprising: a support comprising a light transmissive material; and a stack in which a conductive layer, a photoelectric conversion layer containing a porous semiconductor, a porous insulating layer, and a counter electrode conductive layer are stacked in this order, said conductive layer being divided into a first region including a portion where the photoelectric conversion layer is to be formed on a surface thereof and a second region where the photoelectric conversion layer is not to be formed, a protection film configured to prevent internal short-circuiting, not greater in film thickness in a stacking direction of said stack than a thickness in said stacking direction of said stack of said photoelectric conversion layer, said protection film being formed in at least a part around the photoelectric conversion layer on a surface of said first region and adjacent a side periphery of said photoelectric conversion layer, said protection film not being formed on a top surface said photoelectric conversion layer, a scribe line present between said first region and said second region, said counter electrode conductive layer including a side portion on said second region, and said protection film being positioned between said photoelectric conversion layer on said first region and said side portion of said counter electrode conductive layer, and at least one part of said porous insulating layer being formed on said protection film, wherein said protection film is porous, said protection film has a pore diameter not greater than a particle size of particles forming said porous insulating layer, said protection film is separate from said porous insulating layer, and said porous insulating layer is formed after said protection film is formed. 2. The wet-type solar battery according to claim 1 , wherein a total film thickness of said protection film and said porous insulating layer stacked on said protection film is not smaller than 10 μm. 3. The wet-type solar battery according to claim 1 , wherein a material for said protection film includes at least any of zirconium oxide and silicon oxide. 4. The wet-type solar battery according to claim 1 , wherein said protection film and said porous insulating layer are identical to each other in material. 5. A wet-type solar battery module, comprising: two or more wet-type solar batteries connected in series, at least one of the wet-type solar batteries being said wet-type solar battery according to claim 1 , and a counter electrode conductive layer of one wet-type solar battery of adjacent wet-type solar batteries being electrically connected to a conductive layer of the other wet-type solar battery. 6. The wet-type solar battery according to claim 1 , wherein said protection film is provided to surround said photoelectric conversion layer on the surface of said first region.
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