摘要:
There is provided a photoelectric conversion element in which a porous semiconductor layer is prevented from being detached from an upper supporting body, wherein a photoelectric conversion layer (112), a collecting electrode (104), an insulating layer (105), and a counter electrode (106) are disposed between an upper supporting body (101) and a lower supporting body (110) in this order from the upper supporting body side, the upper supporting body (101) being located at a light incidence side and having a light transmission property, the lower supporting body (110) being located opposite to the upper supporting body (101), the photoelectric conversion layer (112) having a porous semiconductor layer (102, 103), a carrier transport material being included between the upper supporting body (101) and the lower supporting body (110), and an adhesion portion (111) having a film thickness of 0.5 to 10 nm is disposed at least adjacent to and between the upper supporting body (101) and the porous semiconductor layer (103).
摘要:
A dye sensitized solar cell is provided comprising a working electrode, an electrolyte layer and a counter electrode. The working electrode is composed of a filamentous conductive substrate and a sensitized semiconductor film, wherein the sensitized semiconductor film is a porous film structure composed of semiconductor particles of different sizes absorbed with sensitizing dye molecules. The sensitized semiconductor film is coated on the outer surface of the filamentous conductive substrate. The working electrode is joined with the counter electrode by entwisting or attachment. The electrolyte fills in the interspace between the working electrode and the counter electrode.
摘要:
The present invention relates to polymer electrolyte including a polymer fiber having a nanoscale diameter, wherein the polymer fiber is fabricated by an electrospinning method. The present invention also relates to a solar cell device exhibiting high energy conversion efficiency using the same. The solid-state electrolyte comprising nanosized polymer fiber of the present invention does not need a sealing agent and further simplifies the entire process compared to the conventional dye-sensitized solar cell using liquid electrolytes. Specifically, the energy conversion efficiency of the dye-sensitized solar cell of the present invention is significantly superior to that of the dye-sensitized solar cell using a polymer film electrolyte fabricated by a spin coating method. Further, the dye-sensitized solar cell devices can be obtained by using a scattering layer and compensating the surface effect.
标题翻译:在EINEM ELEKTROSPINNING-VERFAHREN HERGESTELLTE ELEKTROLYTHALTIGE POLYMER-NANOFASERN SOWIE HOCHEFFIZIENTE FARBSTOFFSENSIBILISIERTE SOLARZELLEN DAMIT
摘要:
A photoelectric conversion element of the present invention includes: a first electrode being linear; a second electrode; and an electrolyte. The first electrode and the second electrode are disposed via the electrolyte. The first electrode includes a first linear material which includes a copper wire and a metal coating which coats the copper wire and a dye-carrying porous oxide semiconductor layer disposed on an outer circumference of the first linear material.
摘要:
A dye sensitized solar cell comprises a working electrode comprising a filamentous conductive substrate and a sensitized semi-conductor film, wherein the sensitized semi-conductor film is a porous film structure composed of semi-conductor particles of different sizes absorbed with sensitizing dye molecules, and the sensitized semi-conductor film is coated on the outer surface of the filamentous conductive substrate. The filamentous conductive substrate has source abundance, small volume, easiness of deformation, processing convenience and accessibility for series-parallel connection, therefore the solar cell is suitable for narrow and irregular-shaped space requiring specific driving power supply.