A slurry for light scattering layer on photoanode of dye-sensitized solar cell and preparation method thereof
A technology of solar cells and dye sensitization, applied in the field of solar cells, can solve the problems that the scattering layer slurry does not improve the performance of the cells significantly, cannot be market-oriented and mass-produced, and is difficult to mass-produce and industrialize. Effects of recycling efficiency, improvement of photoelectric conversion efficiency, and improvement of battery efficiency
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Embodiment 1
[0041] Step (1): 4g of TiO with a particle size distribution range of 10-30nm 2 Nanopowder and 12g of TiO with a particle size of 0.4μm 2 powder mix;
[0042] Step (2): The TiO mixed in step (1) 2 Powder according to mass ratio TiO 2 : Absolute ethanol=1:15 ratio, uniformly dispersed in absolute ethanol solution to form A solution;
[0043]Step (3): Prepare ethyl cellulose (#46080, viscosity 30-50mPa.s, purchased from Sigma) into 12wt% absolute ethanol solution to form B solution;
[0044] Step (4): Add solution B of step (3) dropwise to solution A of step (2), according to the mass ratio of TiO 2 : Ethyl cellulose = 1: 0.4 comparison dropwise addition of B solution;
[0045] Step (5): Add terpineol dropwise to step (4), according to the mass ratio of TiO 2 : Terpineol = 1:4 comparative drop;
[0046] Step (6): Stir the solution in step (5) mechanically for 2-3 hours to fully mix the solution evenly, and finally obtain a white colloidal emulsion;
[0047] Step (7): Pou...
Embodiment 2
[0049] Step (1): 8g of TiO with a particle size distribution range of 10-30nm 2 Nanopowder and 8g of TiO with a particle size of 0.3μm 2 powder mix;
[0050] Step (2): The TiO mixed in step (1) 2 Powder according to mass ratio TiO 2 : Absolute ethanol=1:15 ratio, uniformly dispersed in absolute ethanol solution to form A solution;
[0051] Step (3): Prepare ethyl cellulose (#46080, viscosity 30-50mPa.s, purchased from Sigma) into 10wt% absolute ethanol solution to form B solution;
[0052] Step (4): Add solution B of step (3) dropwise to solution A of step (2), according to the mass ratio of TiO 2 : Ethyl cellulose = 1:0.5 comparison drop B solution;
[0053] Step (5): Add terpineol dropwise to step (4), according to the mass ratio of TiO 2 : Terpineol = 1:5 comparative drop;
[0054] Step (6): Stir the solution in step (5) mechanically for 3 hours to fully mix the solution evenly, and finally obtain a white colloidal emulsion;
[0055] Step (7): Pour the solution in s...
Embodiment 3
[0057] Step (1): 4g of TiO with a particle size distribution range of 10-30nm 2 Nano powder and 18g of TiO with a particle size of 0.2 μm 2 powder mix;
[0058] Step (2): The TiO mixed in step (1) 2 Powder according to mass ratio TiO 2 : Absolute ethanol=1:20 ratio, uniformly dispersed in absolute ethanol solution to form A solution;
[0059] Step (3): The ethyl cellulose viscosity m9 (viscosity is 8~10 mPa.s, Shanghai test) and m70 (viscosity is 40~100mPa.s, Shanghai test) are prepared according to the mass ratio of 1:1 to 12wt% The dehydrated ethanol solution, forms B solution;
[0060] Step (4): Add solution B of step (3) dropwise to solution A of step (2), according to the mass ratio of TiO 2 : Ethyl cellulose = 1: 0.4 comparison dropwise addition of B solution;
[0061] Step (5): Add terpineol dropwise to step (4), according to the mass ratio of TiO 2 : Terpineol = 1:5 comparative drop;
[0062] Step (6): Stir the solution in step (5) mechanically for 3 hours to f...
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