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Porous one-dimensional photonic crystals improve the power-conversion efficiency of dye-sensitized solar cells

机译:多孔一维光子晶体可提高染料敏化太阳能电池的功率转换效率

摘要

A device for solar-energy conversion was introduced in which a porous and highly reflecting 1D photonic crystal (1D PC) was coupled to a dye-sensitized nanocrystals anatase (NC-TiO2) electrode. The results show that the transparency of the PC-based dye-sensitized solar cells (DSSC) in the visible range of the electromagnetic spectrum is very similar to that of the reference cell. The multilayer whose photonic bandgap has a larger overlap with the absorption band of the ruthenium dye, gives rise to a larger enhancement of the photocurrent. It is also seen that the porous 0.5μm thick PC, whose deleterious effect is compensated by the large increment in photocurrent. The spectral photoelectric response of the cell clearly shows the effect that coupling to a PC has on the current photogenerated in the dye-sensitized electrode.
机译:介绍了一种用于太阳能转换的设备,其中将多孔且高反射率的一维光子晶体(1D PC)耦合到染料敏化的纳米晶体锐钛矿(NC-TiO2)电极上。结果表明,基于PC的染料敏化太阳能电池(DSSC)在电磁光谱的可见光范围内的透明度与参考电池非常相似。光子带隙与钌染料的吸收带具有较大重叠的多层,引起了更大的光电流增强。还可以看到厚度为0.5μm的多孔PC,其有害作用被光电流的大幅度增加所补偿。电池的光谱光电响应清楚地表明了与PC的耦合对染料敏化电极中光生电流的影响。

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