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Densely aligned rutile TiO2 nanorod arrays with high surface area for efficient dye-sensitized solar cells

机译:密集排列金红石二氧化钛奈米棒阵列高表面积高效涂料太阳能电池

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One-dimensional (1-D) TiO2 nanorod arrays (NRAs) with large inner surface area are desired in dye-sensitized solar cells (DSSCs). So far, good performance of DSSCs based on 1-D rutile TiO2 NRAs remains a challenge mainly owing to their low dye-loading ability resulting from the insufficient specific surface area of 1-D TiO2 nanostructures. In this paper, densely aligned TiO2 NRAs with tunable thickness were grown directly on transparent conductive fluorine-doped tin oxide (FTO) substrates by hydrothermal method, followed by a facile chemical etching route to further increase the specific surface area of the TiO2 NRAs. The etching treatment leads to the split of TiO2 nanorods into secondary nanorods with a reduced diameter, which markedly enlarges the inner surface area of the TiO2 NRAs. The formation of 1-D rutile TiO2 nanotube arrays (NTAs) is observed as well in the etched TiO2 films. Finally, a DSSC efficiency of 5.94% was achieved by utilizing an etched TiO2 NRA as the photoanode, which is so far the best DSSC efficiency that has been reported for the 1-D rutile TiO2 NRA films.
机译:一维数组(一维)二氧化钛奈米棒(国家管制当局方面)想要在大的内表面区域涂料太阳能电池(DSSCs)。基于一维DSSCs金红石二氧化钛的性能主要是由于他们的国家管制当局方面仍然是一个挑战低dye-loading能力造成的不足一维二氧化钛的比表面积纳米结构。二氧化钛国家管制当局方面与可调厚度增加直接在透明导电fluorine-doped氧化锡(FTO)基板的热液方法,紧随其后的是一个温和的化学腐蚀路线,进一步增加比表面积二氧化钛的国家管制当局方面。导致分裂的二氧化钛纳米棒二次纳米棒直径的减少,明显增大的内表面积二氧化钛国家管制当局方面。纳米管阵列(NTAs)是观察到的蚀刻二氧化钛薄膜。5.94%是通过利用一个蚀刻二氧化钛NRA光电阳极,这是迄今为止最好的DSSC效率,据报道一维金红石二氧化钛NRA的电影。

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