A kind of SB-tin dioxide-agnws/cbs-gns flexible thin-film solar cell and its preparation method
A technology of solar cells, sb-sno2-agnws, applied in the field of solar cells, can solve problems such as narrow application range, poor flexibility, and harsh preparation conditions of thin-film solar cells
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Embodiment 1
[0025] Sb-SnO 2 -AgNWs / CBS-GNs flexible thin film solar cell preparation method, the process is as follows:
[0026] (1) The purchased poly(3,4-ethylenedioxythiophene)-polystyrenesulfonic acid (PEDOT:PSS) was deposited (thickness about 15 nm) on the PET substrate to improve the contact between AgNWs and the substrate; 5 mg ultrafine AgNWs (diameter≤20 nm) dispersed into 5.5ml EMIMBF 4 and ultrapure water (volume ratio 1:10) in a mixed solution, and continuously stirred for 10 min to obtain a uniform dispersion of AgNWs (the scanning electron microscope picture is shown in figure 1 As shown in a, it shows that AgNWs in EMIMBF 4 The AgNWs solution was deposited on PEDOT:PSS by spin-coating deposition technology, and kept at 80 °C for 1 h to completely evaporate the water to obtain the AgNWs electrode (thickness 45 nm).
[0027] (2) Add appropriate amount of SnCl 4 ·5H 2 O was uniformly dispersed in isopropanol, and stirred continuously for 30 min to obtain a 0.05 M homogene...
Embodiment 2
[0031] For Sb-SnO 2 -AgNWs electron transport layer, gradually increase the mass percentage of AgNWs (in the form of Sb-SnO 2 and the total amount of AgNWs, the addition amount of AgNWs is 0.0, 0.2, 0.4, 0.6, 0.8, 1.0, 1.2, 1.4, 1.6 wt%), and the photoelectric conversion efficiency of the corresponding thin-film solar cells shows a trend of first increasing and then decreasing. Embodiment 1; The photoelectric conversion efficiency of the flexible solar cell varies with the mass percentage of AgNWs. The relationship curve is as follows Figure 4 (a) shown. It shows that the introduction of an appropriate amount (0.2~1.6wt%) of AgNWs can significantly improve the Sb-SnO 2 Electron transport characteristics, the photoelectric conversion efficiency increased from 10.62% to the maximum efficiency of 13.05% (AgNWs addition is 1.0wt%), improving the photoelectric conversion efficiency; (b) is Sb-SnO 2 - The photoelectric conversion efficiency retention rate of AgNWs / CBS-GNs varies...
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