MoIn2S4 ternary counter electrode and method for preparing dye-sensitized solar cell by utilizing same
A technology of solar cells and dye sensitization, applied in the field of solar cells
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[0022] 1. Glass-based TiO 2 Preparation of photoanode
[0023] Cut the FTO glass into a size of 1.5cm*2.0cm, clean the surface stains with detergent, deionized water, acetone, and absolute ethanol respectively, and store them in isopropanol for later use.
[0024] Prepare 0.04M titanium tetrachloride aqueous solution and store in the refrigerator for later use.
[0025] Use a puncher to punch a circular hole with a diameter of 6mm on the scotch tape with a thickness of about 50 microns (the area of the circular hole is 0.283cm 2 ) Stick the tape with round holes on the cleaned FTO glass, and apply TiO with a particle size of 20nm by scraping 2 Spread the slurry evenly on the round hole of FTO, dry it at room temperature, remove the remaining tape, and sinter in a muffle furnace at 450°C for 30min to obtain TiO 2 electrode. Will get TiO 2 The electrodes were soaked in 0.04M titanium tetrachloride aqueous solution, heated in an oven at 70°C for 0.5 hours, dried naturally,...
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