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Investigation of the stability of solid-state dye-sensitized solar cells

机译:固态染料敏化太阳能电池的稳定性研究

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摘要

The stability of the TiO2/ruthenium dye/CuI solid-state solar cell was investigated under continuous simulated sunlight illumination. The cells showed fast degradation under full-spectrum sunlight illumination, but showed rather good stability when the ultraviolet part of the illumination was removed. XPS measurements showed evidence that TiO2 could oxidize CuI in the presence of UV light. The photo-degradation mechanism of the cells is thus discussed on the basis of the photo-oxidative function of TiO2. The long-term stability of the solid-state dye-sensitized solar cell (DSSC) was found to be improved under simulated sunlight by coating the TiO2 porous electrode with an ultra-thin MgO layer, which was able to block the photo-oxidative activity of the TiO2.
机译:在连续模拟阳光照射下研究了TiO2 /钌染料/ CuI固态太阳能电池的稳定性。在全光谱日光照射下,细胞显示出快速降解,但是当除去照射的紫外线部分时,显示出相当好的稳定性。 XPS测量显示有证据表明,在存在紫外线的情况下,TiO2可以氧化CuI。因此,基于TiO 2的光氧化功能来讨论细胞的光降解机理。发现在模拟日光下,通过在TiO2多孔电极上涂覆超薄的MgO层可以改善固态染料敏化太阳能电池(DSSC)的长期稳定性,该超薄MgO层能够阻止光氧化活性二氧化钛。

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