FIELD: chemistry.
SUBSTANCE: present invention relates to dye-sensitised solar cell module (1), which comprises at least two dye-sensitised solar cell units (2a-c) arranged adjacent to each other and connected in series. Dye-sensitised solar cell module comprises porous insulating substrate (7), first conducting layer (4) which is a porous conducting layer formed on one side of porous insulating substrate, and second conducting layer (5) which is a porous conducting layer formed on opposite side of porous insulating substrate. Series connecting element (6) extends through porous insulating substrate and extends between first conducting layer of one of solar cells and second conducting layer of adjacent solar cell, thereby electrically connecting first conducting layer of one of solar cells with second conducting layer of adjacent solar cell. Present invention also relates to a method of making a dye-sensitised solar cell. Increase in output voltage of dye-sensitised solar cell owing to use of serial connection element, made using printing technology, formed by conducting porous layer, extending through porous insulation substrate, is technical result of invention.
EFFECT: also, disclosed module is thin and has compact design, which simplifies implementation of serial connection of solar cells.
19 cl, 12 dwg
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Authors
Dates
2017-02-02—Published
2013-03-08—Filed