Preparation method of large-area flexible dye sensitized solar cell based on titanium foil net
A technology of solar cells and dye sensitization, which is applied in the field of preparation of new materials and large-area flexible dye-sensitized solar cells, can solve the problems of inability to meet the application requirements of sensitized solar cells and high resistance, and achieve the benefits of large-scale production, Meet the application requirements, the preparation conditions are mild and controllable
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Embodiment 1
[0030] The preparation method of the large-area flexible dye-sensitized solar cell based on the titanium foil mesh of the present invention is realized through the following steps:
[0031] The first step, the preparation of raw materials:
[0032] (a) Cleaning of titanium expanded mesh and titanium foil: Cut the titanium expanded mesh and titanium foil into a size of 21cm×4.5cm, wash it with distilled water three times, and then place it in a 2×10 -4 mol / L hydrofluoric acid aqueous solution, take it out after reacting for 5 minutes, and rinse with distilled water three times to obtain cleaned titanium expanded mesh and titanium foil;
[0033] (b) Preparation of hexachloroplatinum (IV) acid aqueous solution: hexachloroplatinum (IV) acid is added to water, and it is configured into 4.0×10 -3 The hexachloroplatinum (IV) acid aqueous solution of mol / L;
[0034] (c) Preparation of hydrochloric acid solution: dissolve concentrated hydrochloric acid in distilled water, and configu...
Embodiment 2
[0046] The first step, the preparation of raw materials:
[0047] (a) Cleaning of titanium expanded mesh and titanium foil: Cut the titanium expanded mesh and titanium foil into a size of 21cm×4.5cm, wash it with distilled water three times, and then place it in a 2×10 -4 mol / L hydrofluoric acid aqueous solution, take it out after reacting for 5 minutes, and rinse with distilled water three times to obtain cleaned titanium expanded mesh and titanium foil;
[0048] (b) Preparation of hexachloroplatinum (IV) acid isopropanol solution: hexachloroplatinum (IV) acid is added to isopropanol, and it is configured into hexachloroplatinum (IV) acid with a mass fraction of 0.96%. ) acid isopropanol solution;
[0049] (c) Preparation of titanium dioxide slurry: Take 20 mL of tetra-n-butyl titanate (purchased from China Pharmaceutical Group Shanghai Chemical Reagent Company) and add it to 300 mL of deionized water. After stirring for 0.5 hours, the obtained white precipitate is suction f...
Embodiment 3
[0058] The first step, the preparation of raw materials:
[0059] (a) Cleaning of titanium expanded mesh and titanium foil: Cut the titanium expanded mesh and titanium foil into a size of 21cm×4.5cm, wash it with distilled water three times, and then place it in a 2×10 -4 mol / L hydrofluoric acid aqueous solution, take it out after reacting for 5 minutes, and rinse with distilled water three times to obtain cleaned titanium expanded mesh and titanium foil;
[0060] (b) Preparation of potassium chloroplatinate (IV) aqueous solution: Potassium chloroplatinate (IV) is added to water, and it is configured to 4.0×10 -3 The potassium chloroplatinate (IV) aqueous solution of mol / L;
[0061] (c) Preparation of sulfuric acid solution: Dissolve concentrated sulfuric acid in distilled water, and configure it into a 1.0mol / L sulfuric acid solution;
[0062] (d) Preparation of titanium dioxide slurry: Take 20 mL of tetra-n-butyl titanate (purchased from China Pharmaceutical Group Shanghai...
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