METHOD OF MANUFACTURING DYE-SENSITIZED SOLAR CELL AND APPARATUR USING THE SAME
PURPOSE: A method and apparatus for manufacturing a dye-sensitized solar cell are provided to improve absorption efficiency by including preset temperature and eddy conditions when a fuel molecule is absorbed. CONSTITUTION: A titanium oxide layer is formed on a first substrate (S100). The first subs...
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Main Authors | , , |
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Format | Patent |
Language | English Korean |
Published |
14.08.2013
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Subjects | |
Online Access | Get full text |
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Summary: | PURPOSE: A method and apparatus for manufacturing a dye-sensitized solar cell are provided to improve absorption efficiency by including preset temperature and eddy conditions when a fuel molecule is absorbed. CONSTITUTION: A titanium oxide layer is formed on a first substrate (S100). The first substrate is inputted to a dye absorption bath (S200). A dye molecule is absorbed on the titanium oxide layer (S300). The first substrate is combined with a second substrate (S400). An electrolyte is provided between the first substrate and the second substrate (S500). [Reference numerals] (AA) Start; (BB) Finish; (S100) Titanium oxide layer is formed by coating a first substrate including a first conductive layer with porous nanoparticle oxide; (S200) First substrate is inputted to a dye absorption bath; (S300) Dye molecule is absorbed on a titanium oxide layer at 40 - 80°C and an eddy of 200 - 800 rpm by inputting dye molecule solutions to a dye absorption bath; (S310) Dye molecules are removed by generating an ultraviolet wave and making cleaning solutions on a first substrate; (S320) Cleaning solutions are dried by generating dry wind on a first substrate transferred in a dry bath; (S400) First substrate is combined with a second substrate; (S500) Electrolyte is provided between a first substrate and a second substrate |
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Bibliography: | Application Number: KR20120010032 |