首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Fabrication of long TiO2 nanotube arrays in a short time using a hybrid anodic method for highly efficient dye-sensitized solar cells
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Fabrication of long TiO2 nanotube arrays in a short time using a hybrid anodic method for highly efficient dye-sensitized solar cells

机译:使用混合阳极法在短时间内制备长的TiO2纳米管阵列,用于高效染料敏化太阳能电池

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摘要

We report a simple hybrid anodic method, with initial potentiostatic anodization followed by galvanostatic anodization, to grow much longer titania nanotube (TNT) arrays in a much shorter anodization period (t). The length of the TNT arrays (L) depends linearly on t and is controlled by the electric current; the growth rates are 5.3, 10.7 and 20.3 μm h~(-1) for current densities 3.7, 5.6 and 7.5 mA cm"2, respectively. The produced TNT films of L = 15-57 urn sensitized with N719 dye were fabricated into devices for photovoltaic characterization. The NT-DSSC devices show systematically improved cell performance depending on L, reflecting the excellent intrinsic light-scattering property of the NT-DSSC devices to harvest increased sunlight with long TNT arrays. The great effective surface area inside TNT arrays has been shown to significantly increase the dye loading, which might help to enhance the cell performance of the device with co-sensitizing of different dyes for improved efficiency of light harvesting in the future. The best performance of the NT-DSSC device was achieved at L ~ 30 μm with a spacer of similar thickness, giving J_(SC) = 14.63 mA cm~(-2), V_(OC) = 0.741 V, FF= 0.70, and η = 7.6%, which is unprecedented for a back-illumination DSSC.
机译:我们报告了一种简单的混合阳极方法,先进行恒电位阳极氧化,再进行恒电流阳极氧化,以在更短的阳极氧化周期(t)中生长更长的二氧化钛纳米管(TNT)阵列。 TNT阵列的长度(L)与t线性相关,并受电流控制;电流密度分别为3.7、5.6和7.5 mA cm•2时,生长速率分别为5.3、10.7和20.3μmh〜(-1)。将生产的用N719染料敏化的L = 15-57 um的TNT薄膜制成器件用于光伏特性的NT-DSSC器件根据L表现出系统地改善的电池性能,这反映了NT-DSSC器件具有出色的固有光散射特性,可以通过长TNT阵列收集更多的阳光。可以显着增加染料的负载量,这可能有助于增强设备的电池性能,同时对不同的染料进行增敏,从而提高未来的光收集效率,NT-DSSC设备的最佳性能在L 〜30μm,具有类似厚度的间隔物,从而提供J_(SC)= 14.63 mA cm〜(-2),V_(OC)= 0.741 V,FF = 0.70和η= 7.6%,这对于后馈是前所未有的照明DSSC。

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