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Facile fabrication of highly porous photoanode at low temperature for all-plastic dye-sensitized solar cells with quasi-solid state electrolyte

机译:具有准固态电解质的全塑料染料敏化太阳能电池在低温下轻松制备高度多孔的光阳极

摘要

Fabrication of stable plastic solar cells is interesting, but still remains a big challenge. In this study, we develop a facile technique to prepare highly porous TiO2 hybrid film on plastic substrate for flexible dye-sensitized solar cells (DSSCs) with quasi-solid state electrolyte, employing an inorganic binder contained TiO2 paste. Compared with a pristine P25 electrode, the obtained photoanode exhibits not only excellent mechanical stability but also improved charge transport property. Moreover, the semiconductor film also shows a highly porous structure with pore volume up to 0.25 cm(3) g(-1), allowing unhindered infiltration of viscous quasi-solid state electrolyte. The obtained all-plastic DSSCs with quasi-solid state electrolyte demonstrate a high efficiency up to 3.6%, which is 76% higher than the devices based on pristine P25 electrodes. The cell efficiency can be further increased to 4.05% by depositing an insulating Al2O3 layer on the TiO2 surface to suppress electron recombination. The effects of the inorganic binder on the performance of the hybrid electrodes as well as the DSSCs are investigated by various techniques and measurements.
机译:稳定的塑料太阳能电池的制造很有趣,但仍然是一个巨大的挑战。在这项研究中,我们开发了一种简便的技术,可在塑料基材上制备具有准固态电解质的柔性多孔染料敏化太阳能电池(DSSC)的高度多孔的TiO2杂化膜,采用的无机粘合剂包含TiO2糊剂。与原始的P25电极相比,所获得的光电阳极不仅显示出优异的机械稳定性,而且显示出改善的电荷传输性能。此外,半导体膜还显示出高度多孔的结构,其孔体积高达0.25 cm(3)g(-1),从而可以无阻碍地渗透粘性的准固态电解质。所获得的具有准固态电解质的全塑料DSSC表现出高达3.6%的高效率,比基于原始P25电极的设备高76%。通过在TiO2表面沉积一层绝缘的Al2O3层来抑制电子复合,可以将电池效率进一步提高到4.05%。通过各种技术和测量来研究无机粘合剂对混合电极以及DSSC性能的影响。

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