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Significant enhancement of power conversion efficiency for dye sensitized solar cell using 1D/3D network nanostructures as photoanodes

机译:使用1D / 3D网络纳米结构作为光阳极显着提高染料敏化太阳能电池的功率转换效率

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摘要

The single–crystalline TiO2 nanorod arrays with rutile phase have attracted much attention in the dye sensitized solar cells (DSSCs) applications because of their superior chemical stability, better electron transport properties, higher refractive index and low production cost. However, it suffers from a low surface area as compared with TiO2 nanoparticle films. In order to enlarge the surface area of TiO2 nanorod arrays, the 1D nanorods/3D nanotubes sample was synthesized using a facile two-step hydrothermal process involving hydrothermal growth 1D/3D nanorods and followed by post-etching treatment. In such bi-layer structure, the oriented TiO2 nanorods layer could provide direct pathway for fast electron transportation, and the 3D nanotubes layer offers a higher surface area for dye loading, therefore, the 1D nanorods/3D nanotubes photoanode exhibited faster electron transport and higher surface area than either 1D or 3D nanostructures alone, and an highest efficiency of 7.68% was achieved for the DSSCs based on 1D nanorods/3D nanotubes photoanode with further TiCl4 treatment.
机译:具有金红石相的单晶TiO2纳米棒阵列因其优异的化学稳定性,更好的电子传输性能,更高的折射率和较低的生产成本而在染料敏化太阳能电池(DSSC)应用中引起了广泛关注。然而,与TiO 2纳米颗粒膜相比,其表面积低。为了扩大TiO2纳米棒阵列的表面积,使用方便的两步水热工艺合成了1D纳米棒/ 3D纳米管样品,该工艺涉及水热生长1D / 3D纳米棒,然后进行后蚀刻处理。在这样的双层结构中,定向的TiO2纳米棒层可以提供快速电子传输的直接途径,而3D纳米管层则提供了更大的染料负载表面积,因此,一维纳米棒/ 3D纳米管的光阳极表现出更快的电子传输和更高的比单独使用1D或3D纳米结构的表面积大,对于基于1D纳米棒/ 3D纳米管光阳极并经过进一步TiCl4处理的DSSC,其最高效率达到7.68%。

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