Dye-sensitized solar battery sealing method
A solar cell and dye sensitization technology, applied in the field of battery sealing, can solve the problems of low product yield, poor appearance and high operational difficulty, and achieve the effects of improving product yield, reducing operational difficulty and avoiding breakage.
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Embodiment 1
[0030] (1) Preparation of semiconductor electrodes
[0031] Soak semiconductor nanocrystal film and fluorine-doped tin dioxide conductive glass in N3 dye aqueous solution with a concentration of 3×10-4 mol / liter for 24 hours, form a dye layer in semiconductor nanocrystal film, and make semiconductor electrode.
[0032] (2) Preparation of counter electrode
[0033] The conductive glass coated with fluorine-doped tin dioxide film (FTO conductive glass with a square resistance of 15 ohms manufactured by Qinhuangdao Yaohua Glass Co., Ltd., with a thickness of 4 mm) was cut into small pieces of 5 cm × 2.5 cm. Clean the conductive glass with water first, and then put in H2 with a concentration of 10% by weight. 2 SO 4 activated in. Put the activated conductive glass into the electrolytic tank for electroplating. The electroplating temperature is controlled at 80°C, the current density is controlled at 0.036 A / cm2, and the electroplating time is 2 minutes. A counter electrode with...
Embodiment 2
[0039] The 100 dye-sensitized solar cell boxes obtained in the above-mentioned Example 1 were subjected to appearance inspection to determine the yield rate of the product, and the results are shown in Table 1.
[0040] Product Yield Calculation
[0041] Product yield (%) = number of qualified products / number of all products
[0042] The qualified product is a product without broken conductive glass.
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