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首页> 外文期刊>ACS nano >General strategy for fabricating transparent TiO_2 nanotube arrays for dye-sensitized photoelectrodes: Illumination geometry and transport properties
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General strategy for fabricating transparent TiO_2 nanotube arrays for dye-sensitized photoelectrodes: Illumination geometry and transport properties

机译:制造用于染料敏化光电极的透明TiO_2纳米管阵列的一般策略:照明几何形状和传输特性

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We report on the preparation of transparent oriented titania nanotube (NT) photoelectrodes and the effect of illumination direction on light harvesting, electron transport, and recombination in dye-sensitized solar cells (DSSCs) incorporating these electrodes. High solar conversion efficiency requires that the incident light enters the cell from the photoelectrode side. However, it has been synthetically challenging to prepare transparent TiO_2 NT electrodes by directly anodizing Ti metal films on transparent conducting oxide (TCO) substrates because of the difficulties of controlling the synthetic conditions. We describe a general synthetic strategy for fabricating transparent TiO_2 NT films on TCO substrates. With the aid of a conducting Nb-doped TiO_2 (NTO) layer between the Ti film and TCO substrate, the Ti film was anodized completely without degrading the TCO. The NTO layer was found to protect the TCO from degradation through a self-terminating mechanism by arresting the electric field-assisted dissolution process at the NT-NTO interface. The illumination direction and wavelength of the light incident on the DSSCs were shown to strongly influence the incident photon-to-current conversion efficiency, light-harvesting, and charge-collection properties, which, in turn, affect the photocurrent density, photovoltage, and solar energy conversion efficiency. Effects of NT film thickness on the properties and performance of DSSCs were also examined. Illuminating the cell from the photoelectrode substantially increased the conversion efficiency compared with illuminating it from the counter-electrode side.
机译:我们报告了透明取向的二氧化钛纳米管(NT)光电极的制备以及照明方向对光收集,电子传输和结合了这些电极的染料敏化太阳能电池(DSSC)中复合的影响。高的太阳能转换效率要求入射光从光电极侧进入电池。然而,由于难以控制合成条件,因此通过在透明导电氧化物(TCO)基底上直接对Ti金属膜进行阳极氧化来制备透明的TiO_2NT电极在合成上具有挑战性。我们描述了在TCO基底上制造透明TiO_2 NT薄膜的一般合成策略。借助于在Ti薄膜和TCO衬底之间的Nb掺杂的TiO_2(NTO)导电层,Ti薄膜被完全阳极氧化而不会降低TCO。发现NTO层通过在NT-NTO界面处阻止电场辅助的溶解过程,通过自我终止机制保护TCO免受降解。结果表明,入射在DSSC上的光的照射方向和波长会严重影响入射的光子-电流转换效率,光收集和电荷收集特性,进而影响光电流密度,光电压和太阳能转换效率。还检查了NT膜厚度对DSSCs性能和性能的影响。与从反电极侧照亮相比,从光电极照亮电池实质上提高了转换效率。

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