Method for preparing sulfide quantum dot co-sensitization porous titanium dioxide photoelectrode
A technology of porous titanium dioxide and quantum dots, which is applied in the field of solar cells, can solve the problems of inconvenient co-sensitization of multiple quantum dots, not using battery optimization, rough methods, etc., to achieve improved photoelectric conversion efficiency, energy conversion efficiency, raw materials cheap effect
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Embodiment 1
[0027] (1) Burn FTO to 450°C, spray 0.2mol / L isopropanol solution of diisopropyl di(acetylacetonate) titanate, keep it warm for 5 minutes, screen print titanium dioxide slurry after cooling, and burn at 450°C for 60 Minutes, the thickness is about 3 microns.
[0028] (2) Configure 0.45mol / L Cd(NO 3 ) 2 and 0.05mol / L Pb(NO 3 ) 2 The mixed aqueous solution A, 0.5mol / L Na 2 S methanol solution B, soak the porous titanium dioxide membrane in A for 5 minutes, rinse it with ultrapure water, dry it, soak it in B for 5 minutes, rinse it with methanol, blow it dry, repeat 5 times. Vacuum drying at 100℃ for 1.5h to prepare sulfide quantum dot co-deposition sensitized porous titanium dioxide electrode TiO 2 / CdPbS(5).
[0029] figure 1 It is a SEM-EDAX photo of the cross-section of lead sulfide and cadmium sulfide quantum dots on the titanium dioxide film. It can be seen from the figure that there are sulfur elements, lead elements and cadmium elements, which fully demonstrates th...
Embodiment 2
[0031] (1) Burn FTO to 400°C, spray 0.1mol / L isopropanol solution of diisopropyl di(acetylacetonate) titanate, keep it warm for 20 minutes, screen print titanium dioxide slurry after cooling, and burn at 480°C for 40 Minutes, the thickness is about 3 microns.
[0032] (2) Configure 0.45mol / L Cd(NO 3 ) 2 and 0.05mol / L Pb(NO 3 ) 2 The mixed aqueous solution A, 0.5mol / L Na 2 S methanol solution B, soak the porous titanium dioxide membrane in A for 5 minutes, rinse with ultrapure water, dry, soak in B for 5 minutes, rinse with methanol, dry, repeat 4 times. Vacuum drying at 100℃ for 1.5h to prepare sulfide quantum dot co-deposition sensitized porous titanium dioxide electrode TiO 2 / CdPbS(4).
Embodiment 3
[0034] (1) Burn FTO to 500°C, spray 0.4mol / L isopropanol solution of diisopropyl di(acetylacetonate) titanate, keep it warm for 10 minutes, screen print titanium dioxide slurry after cooling, and burn at 500°C for 30 Minutes, the thickness is about 3 microns.
[0035] (2) Configure 0.45mol / L Cd(NO 3 ) 2 and 0.05mol / L Pb(NO 3 ) 2 The mixed aqueous solution A, 0.5mol / L Na 2 S methanol solution B, soak the porous titanium dioxide membrane in A for 5 minutes, rinse with ultrapure water, dry it, soak it in B for 5 minutes, rinse it with methanol, blow it dry, repeat 6 times. Vacuum drying at 100℃ for 1.5h to prepare sulfide quantum dot co-deposition sensitized porous titanium dioxide electrode TiO 2 / CdPbS(6).
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