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首页> 外文期刊>Nanoscale >A facile route to fabricate an anodic TiO2 nanotube-nanoparticle hybrid structure for high efficiency dye-sensitized solar cells
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A facile route to fabricate an anodic TiO2 nanotube-nanoparticle hybrid structure for high efficiency dye-sensitized solar cells

机译:简单的路线制作阳极二氧化钛为高nanotube-nanoparticle混合结构色素增感太阳能电池的效率

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摘要

The relatively low internal surface area of anodized TiO2 nanotube arrays (TNAs) limits dye adsorption and light capturing in TNA-based dye-sensitized solar cells (DSSCs). Here, water treatment of as-anodized TNAs at room temperature was used to tailor the geometry of TNA walls in a controllable way, leading to a hybrid tube wall structure with the outer shell in a tubular morphology and the inner surface consisting of small particles. To enable front-side illumination in DSSCs, the TNAs with porous inner walls were transferred to transparent conductive oxide substrates by a self-detaching and transfer technique. The roughened water-treated TNAs show significantly enhanced internal surface area, leading to improved dye-loading and light-harvesting capabilities. Optimized performance was achieved after water treatment for 2 days, with a power conversion efficiency of 6.06%, increased by ~33% compared to conventional TNAs. Furthermore, the hybrid TNA nanostructure provides excellent electron transfer and recombination characteristics, thus promising for high efficiency DSSCs.
机译:相对较低的内部表面积阳极氧化二氧化钛纳米管阵列(TNAs)限制了染料吸附和TNA-based光捕获涂料太阳能电池(DSSCs)。治疗as-anodized TNAs室温被用来调整几何TNA墙的吗可控的方式,导致混合管壁结构与管状的外壳形态和组成的内表面小颗粒。在DSSCs照明,TNAs多孔内部墙被转移到透明的导电氧化基质self-detaching和转移技术。显著增强内部表面积,导致改善dye-loading和聚光功能。水处理后性能实现2天,功率转换效率6.06%,增加了~ 33%相比传统TNAs。提供了优秀的电子转移和复合的特点,因此有前途高效DSSCs。

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